We are here to extend our lives by THINKING DIFFERENT

Showing posts with label Warwick. Show all posts
Showing posts with label Warwick. Show all posts

Monday, February 16, 2009

We all need this reminder

Every so often, I think it's important for us ALL re-read this article.

To inspire. To reflect. To motivate. To take the bull by the horns.

Thanks to Google Analytics I know that over the past 7 days, I've had 34 new visits to my blog and 36 returning. So I'm excited to share with all of these people this article that I know has been so moving for so many CFer's across the world.

Here it is...


Annals of Medicine

The Bell Curve

What happens when patients find out how good their doctors really are?

by Atul Gawande



Every illness is a story, and Annie Page’s began with the kinds of small, unexceptional details that mean nothing until seen in hindsight. Like the fact that, when she was a baby, her father sometimes called her Little Potato Chip, because her skin tasted salty when he kissed her. Or that Annie’s mother noticed that her breathing was sometimes a little wheezy, though the pediatrician heard nothing through his stethoscope.

The detail that finally mattered was Annie’s size. For a while, Annie’s fine-boned petiteness seemed to be just a family trait. Her sister, Lauryn, four years older, had always been at the bottom end of the pediatrician’s growth chart for girls her age. By the time Annie was three years old, however, she had fallen off the chart. She stood an acceptable thirty-four inches tall but weighed only twenty-three pounds—less than ninety-eight per cent of girls her age. She did not look malnourished, but she didn’t look quite healthy, either.

“Failure to thrive” is what it’s called, and there can be scores of explanations: pituitary disorders, hypothyroidism, genetic defects in metabolism, inflammatorybowel disease, lead poisoning, H.I.V., tapeworm infection. In textbooks, the complete list is at least a page long. Annie’s doctor did a thorough workup. Then, at four o’clock on July 27, 1997—“I’ll never forget that day,” her mother, Honor, says—the pediatrician called the Pages at home with the results of a sweat test.

It’s a strange little test. The skin on the inside surface of a child’s forearm is cleaned and dried. Two small gauze pads are applied—one soaked with pilocarpine, a medicine that makes skin sweat, and the other with a salt solution. Electrodes are hooked up. Then a mild electric current is turned on for five minutes, driving the pilocarpine into the skin. A reddened, sweaty area about an inch in diameter appears on the skin, and a collection pad of dry filter paper is taped over it to absorb the sweat for half an hour. A technician then measures the concentration of chloride in the pad.

Over the phone, the doctor told Honor that her daughter’s chloride level was far higher than normal. Honor is a hospital pharmacist, and she had come across children with abnormal results like this. “All I knew was that it meant she was going to die,” she said quietly when I visited the Pages’ home, in the Cincinnati suburb of Loveland. The test showed that Annie had cystic fibrosis.

Cystic fibrosis is a genetic disease. Only a thousand American children per year are diagnosed as having it. Some ten million people in the United States carry the defective gene, but the disorder is recessive: a child will develop the condition only if both parents are carriers and both pass on a copy. The gene—which was discovered, in 1989, sitting out on the long arm of chromosome No. 7—produces a mutant protein that interferes with cells’ ability to manage chloride. This is what makes sweat from people with CF so salty. (Salt is sodium chloride, after all.) The chloride defect thickens secretions throughout the body, turning them dry and gluey. In the ducts of the pancreas, the flow of digestive enzymes becomes blocked, making a child less and less able to absorb food. This was why Annie had all but stopped growing. The effects on the lungs, however, are what make the disease lethal. Thickened mucus slowly fills the small airways and hardens, shrinking lung capacity. Over time, the disease leaves a child with the equivalent of just one functioning lung. Then half a lung. Then none at all.


The one overwhelming thought in the minds of Honor and Don Page was: We need to get to Children’s. Cincinnati Children’s Hospital is among the most respected pediatric hospitals in the country. It was where Albert Sabin invented the oral polio vaccine. The chapter on cystic fibrosis in the “Nelson Textbook of Pediatrics”—the bible of the specialty—was written by one of the hospital’s pediatricians. The Pages called and were given an appointment for the next morning.

“We were there for hours, meeting with all the different members of the team,” Honor recalled. “They took Annie’s blood pressure, measured her oxygen saturation, did some other tests. Then they put us in a room, and the pediatrician sat down with us. He was very kind, but frank, too. He said, ‘Do you understand it’s a genetic disease? That it’s nothing you did, nothing you can catch?’ He told us the median survival for patients was thirty years. In Annie’s lifetime, he said, we could see that go to forty. For him, he was sharing a great accomplishment in CF care. And the news was better than our worst fears. But only forty! That’s not what we wanted to hear.”

The team members reviewed the treatments. The Pages were told that they would have to give Annie pancreatic-enzyme pills with the first bite of every meal. They would have to give her supplemental vitamins. They also had to add calories wherever they could—putting tablespoons of butter on everything, giving her ice cream whenever she wanted, and then putting chocolate sauce on it.

A respiratory therapist explained that they would need to do manual chest therapy at least twice a day, half-hour sessions in which they would strike—“percuss”—their daughter’s torso with a cupped hand at each of fourteen specific locations on the front, back, and sides in order to loosen the thick secretions and help her to cough them up. They were given prescriptions for inhaled medicines. The doctor told them that Annie would need to come back once every three months for extended checkups. And then they went home to start their new life. They had been told almost everything they needed to know in order to give Annie her best chance to live as long as possible.

The one thing that the clinicians failed to tell them, however, was that Cincinnati Children’s was not, as the Pages supposed, among the country’s best centers for children with cystic fibrosis. According to data from that year, it was, at best, an average program. This was no small matter. In 1997, patients at an average center were living to be just over thirty years old; patients at the top center typically lived to be forty-six. By some measures, Cincinnati was well below average. The best predictor of a CF patient’s life expectancy is his or her lung function. At Cincinnati, lung function for patients under the age of twelve—children like Annie—was in the bottom twenty-five per cent of the country’s CF patients. And the doctors there knew it.

It used to be assumed that differences among hospitals or doctors in a particular specialty were generally insignificant. If you plotted a graph showing the results of all the centers treating cystic fibrosis—or any other disease, for that matter—people expected that the curve would look something like a shark fin, with most places clustered around the very best outcomes. But the evidence has begun to indicate otherwise. What you tend to find is a bell curve: a handful of teams with disturbingly poor outcomes for their patients, a handful with remarkably good results, and a great undistinguished middle.

In ordinary hernia operations, the chances of recurrence are one in ten for surgeons at the unhappy end of the spectrum, one in twenty for those in the middle majority, and under one in five hundred for a handful. A Scottish study of patients with treatable colon cancer found that the ten-year survival rate ranged from a high of sixty-three per cent to a low of twenty per cent, depending on the surgeon. For heartbypass patients, even at hospitals with a good volume of experience, risk-adjusted death rates in New York vary from five per cent to under one per cent—and only a very few hospitals are down near the one-per-cent mortality rate.

It is distressing for doctors to have to acknowledge the bell curve. It belies the promise that we make to patients who become seriously ill: that they can count on the medical system to give them their very best chance at life. It also contradicts the belief nearly all of us have that we are doing our job as well as it can be done. But evidence of the bell curve is starting to trickle out, to doctors and patients alike, and we are only beginning to find out what happens when it does.

In medicine, we are used to confronting failure; all doctors have unforeseen deaths and complications. What we’re not used to is comparing our records of success and failure with those of our peers. I am a surgeon in a department that is, our members like to believe, one of the best in the country. But the truth is that we have had no reliable evidence about whether we’re as good as we think we are. Baseball teams have win-loss records. Businesses have quarterly earnings reports. What about doctors?

There is a company on the Web called HealthGrades, which for $7.95 will give you a report card on any physician you choose. Recently, I requested the company’s report cards on me and several of my colleagues. They don’t tell you that much. You will learn, for instance, that I am in fact certified in my specialty, have no criminal convictions, have not been fired from any hospital, have not had my license suspended or revoked, and have not been disciplined. This is no doubt useful to know. But it sets the bar a tad low, doesn’t it?

In recent years, there have been numerous efforts to measure how various hospitals and doctors perform. No one has found the task easy. One difficulty has been figuring out what to measure. For six years, from 1986 to 1992, the federal government released an annual report that came to be known as the Death List, which ranked all the hospitals in the country by their death rate for elderly and disabled patients on Medicare. The spread was alarmingly wide, and the Death List made headlines the first year it came out. But the rankings proved to be almost useless. Death among the elderly or disabled mostly has to do with how old or sick they are to begin with, and the statisticians could never quite work out how to apportion blame between nature and doctors. Volatility in the numbers was one sign of the trouble. Hospitals’ rankings varied widely from one year to the next based on a handful of random deaths. It was unclear what kind of changes would improve their performance (other than sending their sickest patients to other hospitals). Pretty soon the public simply ignored the rankings.

Even with younger patients, death rates are a poor metric for how doctors do. After all, very few young patients die, and when they do it’s rarely a surprise; most already have metastatic cancer or horrendous injuries or the like. What one really wants to know is how we perform in typical circumstances. After I’ve done an appendectomy, how long does it take for my patients to fully recover? After I’ve taken out a thyroid cancer, how often do my patients have serious avoidable complications? How do my results compare with those of other surgeons?

Getting this kind of data can be difficult. Medicine still relies heavily on paper records, so to collect information you have to send people to either scour the charts or track the patients themselves, both of which are expensive and laborious propositions. Recent privacy regulations have made the task still harder. Yet it is being done. The country’s veterans’ hospitals have all now brought in staff who do nothing but record and compare surgeons’ complication rates and death rates. Fourteen teaching hospitals, including my own, have recently joined together to do the same. California, New Jersey, New York, and Pennsylvania have been collecting and reporting data on every cardiac surgeon in their states for several years.

One small field in medicine has been far ahead of most others in measuring the performance of its practitioners: cystic-fibrosis care. For forty years, the Cystic Fibrosis Foundation has gathered detailed data from the country’s cystic-fibrosis treatment centers. It did not begin doing so because it was more enlightened than everyone else. It did so because, in the nineteen-sixties, a pediatrician from Cleveland named LeRoy Matthews was driving people in the field crazy.

Matthews had started a cystic-fibrosis treatment program as a young pulmonary specialist at Babies and Children’s Hospital, in Cleveland, in 1957, and within a few years was claiming to have an annual mortality rate that was less than two per cent. To anyone treating CF at the time, it was a preposterous assertion. National mortality rates for the disease were estimated to be higher than twenty per cent a year, and the average patient died by the age of three. Yet here was Matthews saying that he and his colleagues could stop the disease from doing serious harm for years. “How long [our patients] will live remains to be seen, but I expect most of them to come to my funeral,” he told one conference of physicians.

In 1964, the Cystic Fibrosis Foundation gave a University of Minnesota pediatrician named Warren Warwick a budget of ten thousand dollars to collect reports on every patient treated at the thirty-one CF centers in the United States that year—data that would test Matthews’s claim. Several months later, he had the results: the median estimated age at death for patients in Matthews’s center was twenty-one years, seven times the age of patients treated elsewhere. He had not had a single death among patients younger than six in at least five years.

Unlike pediatricians elsewhere, Matthews viewed CF as a cumulative disease and provided aggressive treatment long before his patients became sick. He made his patients sleep each night in a plastic tent filled with a continuous, aerosolized water mist so dense you could barely see through it. This thinned the tenacious mucus that clogged their airways and enabled them to cough it up. Like British pediatricians, he also had family members clap on the children’s chests daily to help loosen the mucus. After Warwick’s report came out, Matthews’s treatment quickly became the standard in this country. The American Thoracic Society endorsed his approach, and Warwick’s data registry on treatment centers proved to be so useful that the Cystic Fibrosis Foundation has continued it ever since.

Looking at the data over time is both fascinating and disturbing. By 1966, mortality from CF nationally had dropped so much that the average life expectancy of CF patients had already reached ten years. By 1972, it was eighteen years—a rapid and remarkable transformation. At the same time, though, Matthews’s center had got even better. The foundation has never identified individual centers in its data; to insure participation, it has guaranteed anonymity. But Matthews’s center published its results. By the early nineteen-seventies, ninety-five per cent of patients who had gone there before severe lung disease set in were living past their eighteenth birthday. There was a bell curve, and the spread had narrowed a little. Yet every time the average moved up Matthews and a few others somehow managed to stay ahead of the pack. In 2003, life expectancy with CF had risen to thirty-three years nationally, but at the best center it was more than forty-seven. Experts have become as leery of life-expectancy calculations as they are of hospital death rates, but other measures tell the same story. For example, at the median center, lung function for patients with CF—the best predictor of survival—is about three-quarters of what it is for people without CF. At the top centers, the average lung function of patients is indistinguishable from that of children who do not have CF.

What makes the situation especially puzzling is that our system for CF care is far more sophisticated than that for most diseases. The hundred and seventeen CF centers across the country are all ultra-specialized, undergo a rigorous certification process, and have lots of experience in caring for people with CF. They all follow the same detailed guidelines for CF treatment. They all participate in research trials to figure out new and better treatments. You would think, therefore, that their results would be much the same. Yet the differences are enormous. Patients have not known this. So what happens when they find out?

In the winter of 2001, the Pages and twenty other families were invited by their doctors at Cincinnati Children’s to a meeting about the CF program there. Annie was seven years old now, a lively, brown-haired second grader. She was still not growing enough, and a simple cold could be hellish for her, but her lung function had been stable. The families gathered in a large conference room at the hospital. After a brief introduction, the doctors started flashing PowerPoint slides on a screen: here is how the top programs do on nutrition and respiratory performance, and here is how Cincinnati does. It was a kind of experiment in openness. The doctors were nervous. Some were opposed to having the meeting at all. But hospital leaders had insisted on going ahead. The reason was Don Berwick.

Berwick runs a small, nonprofit organization in Boston called the Institute for Healthcare Improvement. The institute provided multimillion-dollar grants to hospitals that were willing to try his ideas for improving medicine. Cincinnati’s CF program won one of the grants. And among Berwick’s key stipulations was that recipients had to open up their information to their patients—to “go naked,” as one doctor put it.

Berwick, a former pediatrician, is an unusual figure in medicine. In 2002, the industry publication Modern Healthcare listed him as the third most powerful person in American health care. Unlike the others on the list, he is powerful not because of the position he holds. (The Secretary of Health and Human Services, Tommy Thompson, was No. 1, and the head of Medicare and Medicaid was No. 2.) He is powerful because of how he thinks.

In December, 1999, at a health-care conference, Berwick gave a forty-minute speech distilling his ideas about the failings of American health care. Five years on, people are still talking about the speech. The video of it circulated like samizdat. (That was how I saw it: on a grainy, overplayed tape, about a year later.) A booklet with the transcript was sent to thousands of doctors around the country. Berwick is middle-aged, soft-spoken, and unprepossessing, and he knows how to use his apparent ordinariness to his advantage. He began his speech with a gripping story about a 1949 Montana forest fire that engulfed a parachute brigade of firefighters. Panicking, they ran, trying to make it up a seventy-six-per-cent grade and over a crest to safety. But their commander, a man named Wag Dodge, saw that it wasn’t going to work. So he stopped, took out some matches, and set the tall dry grass ahead of him on fire. The new blaze caught and rapidly spread up the slope. He stepped into the middle of the burned-out area it left behind, lay down, and called out to his crew to join him. He had invented what came to be called an “escape fire,” and it later became a standard part of Forest Service fire training. His men, however, either thought he was crazy or never heard his calls, and they ran past him. All but two were caught by the inferno and perished. Inside his escape fire, Dodge survived virtually unharmed.

As Berwick explained, the organization had unravelled. The men had lost their ability to think coherently, to act together, to recognize that a lifesaving idea might be possible. This is what happens to all flawed organizations in a disaster, and, he argued, that’s what is happening in modern health care. To fix medicine, Berwick maintained, we need to do two things: measure ourselves and be more open about what we are doing. This meant routinely comparing the performance of doctors and hospitals, looking at everything from complication rates to how often a drug ordered for a patient is delivered correctly and on time. And, he insisted, hospitals should give patients total access to the information. “ ‘No secrets’ is the new rule in my escape fire,” he said. He argued that openness would drive improvement, if simply through embarrassment. It would make it clear that the well-being and convenience of patients, not doctors, were paramount. It would also serve a fundamental moral good, because people should be able to learn about anything that affects their lives.

Berwick’s institute was given serious money from the Robert Wood Johnson Foundation to offer those who used his ideas. And so the doctors, nurses, and social workers of Cincinnati Children’s stood uncertainly before a crowd of patients’ families in that hospital conference room, told them how poorly the program’s results ranked, and announced a plan for doing better. Surprisingly, not a single family chose to leave the program.

“We thought about it after that meeting,” Ralph Blackwelder told me. He and his wife, Tracey, have eight children, four of whom have CF. “We thought maybe we should move. We could sell my business here and start a business somewhere else. We were thinking, Why would I want my kids to be seen here, with inferior care? I want the very best people to be helping my children.” But he and Tracey were impressed that the team had told them the truth. No one at Cincinnati Children’s had made any excuses, and everyone appeared desperate to do better. The Blackwelders had known these people for years. The program’s nutritionist, Terri Schindler, had a child of her own in the program. Their pulmonary specialist, Barbara Chini, had been smart, attentive, loving—taking their late-night phone calls, seeing the children through terrible crises, instituting new therapies as they became available. The program director, Jim Acton, made a personal promise that there would soon be no better treatment center in the world.

Honor Page was alarmed when she saw the numbers. Like the Blackwelders, the Pages had a close relationship with the team at Children’s, but the news tested their loyalty. Acton announced the formation of several committees that would work to improve the program’s results. Each committee, he said, had to have at least one parent on it. This is unusual; hospitals seldom allow patients and families on internal-review committees. So, rather than walk away, Honor decided to sign up for the committee that would reëxamine the science behind patients’ care.

Her committee was puzzled that the center’s results were not better. Not only had the center followed national guidelines for CF; two of its physicians had helped write them. They wanted to visit the top centers, but no one knew which those were. Although the Cystic Fibrosis Foundation’s annual reports displayed the individual results for each of the country’s hundred and seventeen centers, no names were attached. Doctors put in a call and sent e-mails to the foundation, asking for the names of the top five, but to no avail.

Several months later, in early 2002, Don Berwick visited the Cincinnati program. He was impressed by its seriousness, and by the intense involvement of the families, but he was incredulous when he learned that the committee couldn’t get the names of the top programs from the foundation. He called the foundation’s executive vice-president for medical affairs, Preston Campbell. “I was probably a bit self-righteous,” Berwick says. “I said, ‘How could you do this?’ And he said, ‘You don’t understand our world.’ ” This was the first Campbell had heard about the requests, and he reacted with instinctive caution. The centers, he tried to explain, give their data voluntarily. The reason they have done so for forty years is that they have trusted that it would be kept confidential. Once the centers lost that faith, they might no longer report solid, honest information tracking how different treatments are working, how many patients there are, and how well they do.

Campbell is a deliberate and thoughtful man, a pediatric pulmonologist who has devoted his career to cystic-fibrosis patients. The discussion with Berwick had left him uneasy. The Cystic Fibrosis Foundation had always been dedicated to the value of research; by investing in bench science, it had helped decode the gene for cystic fibrosis, produce two new drugs approved for patients, and generate more than a dozen other drugs that are currently being tested. Its investments in tracking patient care had produced scores of valuable studies. But what do you do when the research shows that patients are getting care of widely different quality?

A couple of weeks after Berwick’s phone call, Campbell released the names of the top five centers to Cincinnati. The episode convinced Campbell and others in the foundation that they needed to join the drive toward greater transparency, rather than just react. The foundation announced a goal of making the outcomes of every center publicly available. But it has yet to come close to doing so. It’s a measure of the discomfort with this issue in the cystic-fibrosis world that Campbell asked me not to print the names of the top five. “We’re not ready,” he says. “It’d be throwing grease on the slope.” So far, only a few of the nation’s CF treatment centers are committed to going public.

Still, after travelling to one of the top five centers for a look, I found I could not avoid naming the center I saw—no obscuring physicians’ identities or glossing over details. There was simply no way to explain what a great center did without the particulars. The people from Cincinnati found this, too. Within months of learning which the top five centers were, they’d spoken to each and then visited what they considered to be the very best one, the Minnesota Cystic Fibrosis Center, at Fairview-University Children’s Hospital, in Minneapolis. I went first to Cincinnati, and then to Minneapolis for comparison.

What I saw in Cincinnati both impressed me and, given its ranking, surprised me. The CF staff was skilled, energetic, and dedicated. They had just completed a flu-vaccination campaign that had reached more than ninety per cent of their patients. Patients were being sent questionnaires before their clinic visits so that the team would be better prepared for the questions they would have and the services (such as X-rays, tests, and specialist consultations) they would need. Before patients went home, the doctors gave them a written summary of their visit and a complete copy of their record, something that I had never thought to do in my own practice.

I joined Cori Daines, one of the seven CF-care specialists, in her clinic one morning. Among the patients we saw was Alyssa. She was fifteen years old, freckled, skinny, with nails painted loud red, straight sandy-blond hair tied in a ponytail, a soda in one hand, legs crossed, foot bouncing constantly. Every few minutes, she gave a short, throaty cough. Her parents sat to one side. All the questions were directed to her. How had she been doing? How was school going? Any breathing difficulties? Trouble keeping up with her calories? Her answers were monosyllabic at first. But Daines had known Alyssa for years, and slowly she opened up. Things had mostly been going all right, she said. She had been sticking with her treatment regimen—twice-a-day manual chest therapy by one of her parents, inhaled medications using a nebulizer immediately afterward, and vitamins. Her lung function had been measured that morning, and it was sixty-seven per cent of normal—slightly down from her usual eighty per cent. Her cough had got a little worse the day before, and this was thought to be the reason for the dip. Daines was concerned about stomach pains that Alyssa had been having for several months. The pains came on unpredictably, Alyssa said—before meals, after meals, in the middle of the night. They were sharp, and persisted for up to a couple of hours. Examinations, tests, and X-rays had found no abnormalities, but she’d stayed home from school for the past five weeks. Her parents, exasperated because she seemed fine most of the time, wondered if the pain could be just in her head. Daines wasn’t sure. She asked a staff nurse to check in with Alyssa at home, arranged for a consultation with a gastroenterologist and with a pain specialist, and scheduled an earlier return visit than the usual three months.

This was, it seemed to me, real medicine: untidy, human, but practiced carefully and conscientiously—as well as anyone could ask for. Then I went to Minneapolis.

The director of Fairview-University Children’s Hospital’s cystic-fibrosis center for almost forty years has been none other than Warren Warwick, the pediatrician who had conducted the study of LeRoy Matthews’s suspiciously high success rate. Ever since then, Warwick has made a study of what it takes to do better than everyone else. The secret, he insists, is simple, and he learned it from Matthews: you do whatever you can to keep your patients’ lungs as open as possible. Patients with CF at Fairview got the same things that patients everywhere did—some nebulized treatments to loosen secretions and unclog passageways (a kind of mist tent in a mouth pipe), antibiotics, and a good thumping on their chests every day. Yet, somehow, everything he did was different.

In the clinic one afternoon, I joined him as he saw a seventeen-year-old high-school senior named Janelle, who had been diagnosed with CF at the age of six and had been under his care ever since. She had come for her routine three-month checkup. She wore dyed-black hair to her shoulder blades, black Avril Lavigne eyeliner, four earrings in each ear, two more in an eyebrow, and a stud in her tongue. Warwick is seventy-six years old, tall, stooped, and frumpy-looking, with a well-worn tweed jacket, liver spots dotting his skin, wispy gray hair—by all appearances, a doddering, mid-century academic. He stood in front of Janelle for a moment, hands on his hips, looking her over, and then he said, “So, Janelle, what have you been doing to make us the best CF program in the country?”

“It’s not easy, you know,” she said.

They bantered. She was doing fine. School was going well. Warwick pulled out her latest lung-function measurements. There’d been a slight dip, as there was with Alyssa. Three months earlier, Janelle had been at a hundred and nine per cent (she was actually doing better than normal); now she was at around ninety per cent. Ninety per cent was still pretty good, and some ups and downs in the numbers are to be expected. But this was not the way Warwick saw the results.

He knitted his eyebrows. “Why did they go down?” he asked.

Janelle shrugged.

Any cough lately? No. Colds? No. Fevers? No. Was she sure she’d been taking her treatments regularly? Yes, of course. Every day? Yes. Did she ever miss treatments? Sure. Everyone does once in a while. How often is once in a while?

Then, slowly, Warwick got a different story out of her: in the past few months, it turned out, she’d barely been taking her treatments at all.

He pressed on. “Why aren’t you taking your treatments?” He appeared neither surprised nor angry. He seemed genuinely curious, as if he’d never run across this interesting situation before.

“I don’t know.”

He kept pushing. “What keeps you from doing your treatments?”

“I don’t know.”

“Up here”—he pointed at his own head—“what’s going on?”

“I don’t know,” she said.

He paused for a moment. And then he began speaking to me, taking a new tack. “The thing about patients with CF is that they’re good scientists,” he said. “They always experiment. We have to help them interpret what they experience as they experiment. So they stop doing their treatments. And what happens? They don’t get sick. Therefore, they conclude, Dr. Warwick is nuts.”

“Let’s look at the numbers,” he said to me, ignoring Janelle. He went to a little blackboard he had on the wall. It appeared to be well used. “A person’s daily risk of getting a bad lung illness with CF is 0.5 per cent.” He wrote the number down. Janelle rolled her eyes. She began tapping her foot. “The daily risk of getting a bad lung illness with CF plus treatment is 0.05 per cent,” he went on, and he wrote that number down. “So when you experiment you’re looking at the difference between a 99.95-per-cent chance of staying well and a 99.5-per-cent chance of staying well. Seems hardly any difference, right? On any given day, you have basically a one-hundred-per-cent chance of being well. But”—he paused and took a step toward me—“it is a big difference.” He chalked out the calculations. “Sum it up over a year, and it is the difference between an eighty-three-per-cent chance of making it through 2004 without getting sick and only a sixteen-per-cent chance.”

He turned to Janelle. “How do you stay well all your life? How do you become a geriatric patient?” he asked her. Her foot finally stopped tapping. “I can’t promise you anything. I can only tell you the odds.”

In this short speech was the core of Warwick’s world view. He believed that excellence came from seeing, on a daily basis, the difference between being 99.5-per-cent successful and being 99.95-per-cent successful. Many activities are like that, of course: catching fly balls, manufacturing microchips, delivering overnight packages. Medicine’s only distinction is that lives are lost in those slim margins.

And so he went to work on finding that margin for Janelle. Eventually, he figured out that she had a new boyfriend. She had a new job, too, and was working nights. The boyfriend had his own apartment, and she was either there or at a friend’s house most of the time, so she rarely made it home to take her treatments. At school, new rules required her to go to the school nurse for each dose of medicine during the day. So she skipped going. “It’s such a pain,” she said. He learned that there were some medicines she took and some she didn’t. One she took because it was the only thing that she felt actually made a difference. She took her vitamins, too. (“Why your vitamins?” “Because they’re cool.”) The rest she ignored.

Warwick proposed a deal. Janelle would go home for a breathing treatment every day after school, and get her best friend to hold her to it. She’d also keep key medications in her bag or her pocket at school and take them on her own. (“The nurse won’t let me.” “Don’t tell her,” he said, and deftly turned taking care of herself into an act of rebellion.) So far, Janelle was O.K. with this. But there was one other thing, he said: she’d have to come to the hospital for a few days of therapy to recover the lost ground. She stared at him.

“Today?”

“Yes, today.”

“How about tomorrow?”

“We’ve failed, Janelle,” he said. “It’s important to acknowledge when we’ve failed.”

With that, she began to cry.

Warwick’s combination of focus, aggressiveness, and inventiveness is what makes him extraordinary. He thinks hard about his patients, he pushes them, and he does not hesitate to improvise. Twenty years ago, while he was listening to a church choir and mulling over how he might examine his patients better, he came up with a new stethoscope—a stereo-stethoscope, he calls it. It has two bells dangling from it, and, because of a built-in sound delay, transmits lung sounds in stereo. He had an engineer make it for him. Listening to Janelle with the instrument, he put one bell on the right side of her chest and the other on her left side, and insisted that he could systematically localize how individual lobes of her lungs sounded.

He invented a new cough. It wasn’t enough that his patients actively cough up their sputum. He wanted a deeper, better cough, and later, in his office, Warwick made another patient practice his cough. The patient stretched his arms upward, yawned, pinched his nose, bent down as far as he could, let the pressure build up, and then, straightening, blasted everything out. (“Again!” Warwick encouraged him. “Harder!”)

He produced his most far-reaching invention almost two decades ago—a mechanized, chest-thumping vest for patients to wear. The chief difficulty for people with CF is sticking with the laborious daily regimen of care, particularly the manual chest therapy. It requires another person’s help. It requires conscientiousness, making sure to bang on each of the fourteen locations on a patient’s chest. And it requires consistency, doing this twice a day, every day, year after year. Warwick had become fascinated by studies showing that inflating and deflating a blood-pressure cuff around a dog’s chest could mobilize its lung secretions, and in the mid-nineteen-eighties he created what is now known as the Vest. It looks like a black flak jacket with two vacuum hoses coming out of the sides. These are hooked up to a compressor that shoots quick blasts of air in and out of the vest at high frequencies. (I talked to a patient while he had one of these on. He vibrated like a car on a back road.) Studies eventually showed that Warwick’s device was at least as effective as manual chest therapy, and was used far more consistently. Today, forty-five thousand patients with CF and other lung diseases use the technology.

Like most medical clinics, the Minnesota Cystic Fibrosis Center has several physicians and many more staff members. Warwick established a weekly meeting to review everyone’s care for their patients, and he insists on a degree of uniformity that clinicians usually find intolerable. Some chafe. He can have, as one of the doctors put it, “somewhat of an absence of, um, collegial respect for different care plans.” And although he stepped down as director of the center in 1999, to let a protégé, Carlos Milla, take over, he remains its guiding spirit. He and his colleagues aren’t content if their patients’ lung function is eighty per cent of normal, or even ninety per cent. They aim for a hundred per cent—or better. Almost ten per cent of the children at his center get supplemental feedings through a latex tube surgically inserted into their stomachs, simply because, by Warwick’s standards, they were not gaining enough weight. There’s no published research showing that you need to do this. But not a single child or teen-ager at the center has died in years. Its oldest patient is now sixty-four.

The buzzword for clinicians these days is “evidence-based practice”—good doctors are supposed to follow research findings rather than their own intuition or ad-hoc experimentation. Yet Warwick is almost contemptuous of established findings. National clinical guidelines for care are, he says, “a record of the past, and little more—they should have an expiration date.” I accompanied him as he visited another of his patients, Scott Pieper. When Pieper came to Fairview, at the age of thirty-two, he had lost at least eighty per cent of his lung capacity. He was too weak and short of breath to take a walk, let alone work, and he wasn’t expected to last a year. That was fourteen years ago.

“Some days, I think, This is it—I’m not going to make it,” Pieper told me. “But other times I think, I’m going to make sixty, seventy, maybe more.” For the past several months, Warwick had Pieper trying a new idea—wearing his vest not only for two daily thirty-minute sessions but also while napping for two hours in the middle of the day. Falling asleep in that shuddering thing took some getting used to. But Pieper was soon able to take up bowling, his first regular activity in years. He joined a two-night-a-week league. He couldn’t go four games, and his score always dropped in the third game, but he’d worked his average up to 177. “Any ideas about what we could do so you could last for that extra game, Scott?” Warwick asked. Well, Pieper said, he’d noticed that in the cold—anything below fifty degrees—and when humidity was below fifty per cent, he did better. Warwick suggested doing an extra hour in the vest on warm or humid days and on every game day. Pieper said he’d try it.

We are used to thinking that a doctor’s ability depends mainly on science and skill. The lesson from Minneapolis is that these may be the easiest parts of care. Even doctors with great knowledge and technical skill can have mediocre results; more nebulous factors like aggressiveness and consistency and ingenuity can matter enormously. In Cincinnati and in Minneapolis, the doctors are equally capable and well versed in the data on CF. But if Annie Page—who has had no breathing problems or major setbacks—were in Minneapolis she would almost certainly have had a feeding tube in her stomach and Warwick’s team hounding her to figure out ways to make her breathing even better than normal.

Don Berwick believes that the subtleties of medical decision-making can be identified and learned. The lessons are hidden. But if we open the book on physicians’ results, the lessons will be exposed. And if we are genuinely curious about how the best achieve their results, he believes they will spread.

The Cincinnati CF team has already begun tracking the nutrition and lung function of individual patients the way Warwick does, and is getting more aggressive in improving the results in these areas, too. Yet you have to wonder whether it is possible to replicate people like Warwick, with their intense drive and constant experimenting. In the two years since the Cystic Fibrosis Foundation began bringing together centers willing to share their data, certain patterns have begun to emerge, according to Bruce Marshall, the head of quality improvement for the foundation. All the centers appear to have made significant progress. None, however, have progressed more than centers like Fairview.

“You look at the rates of improvement in different quartiles, and it’s the centers in the top quartile that are improving fastest,” Marshall says. “They are at risk of breaking away.” What the best may have, above all, is a capacity to learn and adapt—and to do so faster than everyone else.

Once we acknowledge that, no matter how much we improve our average, the bell curve isn’t going away, we’re left with all sorts of questions. Will being in the bottom half be used against doctors in lawsuits? Will we be expected to tell our patients how we score? Will our patients leave us? Will those at the bottom be paid less than those at the top? The answer to all these questions is likely yes.

Recently, there has been a lot of discussion, for example, about “paying for quality.” (No one ever says “docking for mediocrity,” but it amounts to the same thing.) Congress has discussed the idea in hearings. Insurers like Aetna and the Blue Cross-Blue Shield companies are introducing it across the country. Already, Medicare has decided not to pay surgeons for intestinal transplantation operations unless they achieve a predefined success rate. Not surprisingly, this makes doctors anxious. I recently sat in on a presentation of the concept to an audience of doctors. By the end, some in the crowd were practically shouting with indignation: We’re going to be paid according to our grades? Who is doing the grading? For God’s sake, how?

We in medicine are not the only ones being graded nowadays. Firemen, C.E.O.s, and salesmen are. Even teachers are being graded, and, in some places, being paid accordingly. Yet we all feel uneasy about being judged by such grades. They never seem to measure the right things. They don’t take into account circumstances beyond our control. They are misused; they are unfair. Still, the simple facts remain: there is a bell curve in all human activities, and the differences you measure usually matter.

I asked Honor Page what she would do if, after all her efforts and the efforts of the doctors and nurses at Cincinnati Children’s Hospital to insure that “there was no place better in the world” to receive cystic-fibrosis care, their comparative performance still rated as resoundingly average.

“I can’t believe that’s possible,” she told me. The staff have worked so hard, she said, that she could not imagine they would fail.

After I pressed her, though, she told me, “I don’t think I’d settle for Cincinnati if it remains just average.” Then she thought about it some more. Would she really move Annie away from people who had been so devoted all these years, just because of the numbers? Well, maybe. But, at the same time, she wanted me to understand that their effort counted for more than she was able to express.

I do not have to consider these matters for very long before I start thinking about where I would stand on a bell curve for the operations I do. I have chosen to specialize (in surgery for endocrine tumors), so I would hope that my statistics prove to be better than those of surgeons who only occasionally do the kind of surgery I do. But am I up in Warwickian territory? Do I have to answer this question?

The hardest question for anyone who takes responsibility for what he or she does is, What if I turn out to be average? If we took all the surgeons at my level of experience, compared our results, and found that I am one of the worst, the answer would be easy: I’d turn in my scalpel. But what if I were a C? Working as I do in a city that’s mobbed with surgeons, how could I justify putting patients under the knife? I could tell myself, Someone’s got to be average. If the bell curve is a fact, then so is the reality that most doctors are going to be average. There is no shame in being one of them, right?

Except, of course, there is. Somehow, what troubles people isn’t so much being average as settling for it. Everyone knows that averageness is, for most of us, our fate. And in certain matters—looks, money, tennis—we would do well to accept this. But in your surgeon, your child’s pediatrician, your police department, your local high school? When the stakes are our lives and the lives of our children, we expect averageness to be resisted. And so I push to make myself the best. If I’m not the best already, I believe wholeheartedly that I will be. And you expect that of me, too. Whatever the next round of numbers may say. ♦

Thursday, August 7, 2008

Warwick's Vest Letter from 2007

I post this in the spirit of information sharing to my fellow CFers. Warwick is so dedicated to CF care that it is my assumption that he would be ok with me posting this to help and prolong the lives of my fellow CFers.

Everything that follows are his words:



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RECOMMENDATIONS FOR
HIGH FREQUENCY CHEST COMPRESSION THERAPY
by
Warren J. Warwick,
March 27, 2007


INTRODUCTION

The four High Frequency Chest Compression (HFCC) systems in use today are the asymmetric sine waveform machines (the ElectroMed SmartVest and the Hill/Rom Model 104tm and Model 105tm, the symmetrical sine waveform Hill/Rom Model 103tm and the triangle waveform Respirtech InCourage Systemtm. All but the Hill/Rom Model 103tm, the most widely used HFCC system, are commercially available. The symmetrical sine waveform Hill/Rom Model 103tm is, in my opinion, better than the asymmetric sine waveform machines I expect it to be in use for many years,

The positive aspects of using HFCC therapy include; the simplicity of the HFCC technology, the ease of its use, and that it always works with 100% of the settings on the dials over the whole time of therapy. I believe that HFCC will always provide better treatment than other effective techniques including manual chest clearance, Autogenic Breathing and Active Cycle Breathing as well as the Flutter and Acapella.


HOW AND WHEN IT IS BEST USE HFCC

HFCC works most effectively when patients breathe with their normal pattern of short inspiration and longer passive expiration. When the patient breaths at the prescribed highest pressures that are tolerated for each frequency the chest compressions, push micro-coughs of air flow through the airways and at the same time oscillating the air in the airway passages. There is a separate simultaneously beneficial effect, for patients with cystic fibrosis, for whom the triangle waveform pressure pulsations will increase the amount of water secreted by the respiratory mucous secreting cells and glands.

I recommend two HFCC therapy sessions of 30 minutes every day for routine preventive therapy (with a pause to cough about every five minutes of HFCC therapy). When the patient has a worsening lung problem, I recommend doing three HFCC therapy sessions a day with up to 60 minutes for therapy each session.


STARTING HFCC THERAPY DETAILS:

The sine waveform vests must be inflated before HFCC can start. That inflating compression pressure on the chest reduces the patient's lung volume making breathing difficult. Before HFCC therapy starts, every patient must use extra energy and more muscles to breathe. In addition, the Hill-Rom machines must have a tube disconnected from the vest or the machine after each 5 minutes so that the patient will be able to take the deep breath require for coughing.

With the InCourage Systemtm and The SmartVesttm the vest pressure drops to atmospheric pressure when compression pulses stop so a tube does not need to be detached.

Our prescription for HFCC frequencies was developed over 16 years ago measuring the airflow and velocity on 100 patients with CF who used the same vest with each machine. We found a wide scatter of 'best' velocities and volumes; sometimes with several frequencies having almost identical 'best' values. Milla CE, Hansen LG, Warwick WJ. Different Frequencies Should Be Prescribed For Different High Frequency Chest Compression Machines. Biomed Instrum Technol. 2006 Jul-Aug;40(4):319-24. Every frequency was a best frequency for at least one patient. For the sine waveform machine 103tm machine, and by analogy interpreting that data for all triangle waveform machines the best frequencies for large volumes are 6, 8 and 9 Hz and the best frequencies for highest velocities are 18, 19 and 20 Hz. The least effective frequencies are 10 to 17 Hz. Each of these frequencies is used for five minutes in any order followed with a pause for the patient to cough to clear the moved sputum.

With the original square waveform (101TM and 102tm) machines and the triangle waveform inCourage machine both the best flows and volumes are 6, 7, 8, 10, 11 and 14 Hz. The "triangle waveform" frequencies are the same as the square waveform machines.
For the inCourage System I recommend frequencies 6, 7, 8, 10, 11 and 14 for individual frequencies but I prefer the "Quick Start" that continuously, pulse by pulse, increases from 6 to 14 and then from 14 to 6 Hz over a five minute cycle followed with a pause for the patient to cough to clear the moved sputum.



THE SINE WAVEFORM PRESSURE AND FREQUENCY INTERACTION:

The sine waveform interaction between frequencies and pressures was recognized immediately after the Model 103TM became available for which we developed a clinical adjustment and a teaching table that has now been improved by laboratory research. The guideline for the use of the table remained unchanged. The pressure change is in the 18, 19, and 20 table line for two "4's" for the 103TM and for two "5's" for the 1004TM.

For the "sine waveform" machines, the pressure column is determined by starting with frequency 6 and pressure 3. Then after a few breaths increasing the pressure to 4. If the patient notices no difference to increase the pressure 5 dial setting...and so forth... until the parent notices that the new pressure changes the breathing pattern or the patient complains that the new pressure makes breathing harder. That frequency is TOO high.

The previous lower pressure column is then selected to use to reduce the vest pressure at higher frequencies. For example if the patient notices a difference in breathing with pressure 7 then the patient should use pressure column 6 for all the frequencies. This will need to be checked each year for a growing child in good health and more frequently if changes in height or growth or health are significant.

Patients using Model 103tm or any "symmetric sine waveform" system should adjust frequencies and pressures using the Table for the Model 103tm with frequencies 6, 8, 9, 18, 19 and 20 in sequence, for 5 minutes each frequency followed by a cough. The frequencies 10 to 17 have been shown in our Minnesota Research to be the least likely to be a useful for airway clearance.

Table for the Model 103tm

Frequencies to be used in sequence Pressure Columns
6 3 4 5 6 7 8 9 10
8 and 9 2 3 4 5 6 7 8 9
18, 19 and 20 1 2 3 4 4 5 6 7



Patients using the Model 104tm should use the Model 104tm table with frequencies 6, 8, 9, 18, 19 and 20 in sequence, for 5 minutes each frequency followed by a cough.

Table for the Model 104tm

Frequencies to be used in sequence Pressure Columns
6 5 6 7 8 9 10
8 and 9 4 5 6 7 8 9
18, 19 and 20 3 4 5 5 6 7

*This graphic is simply to help understand the information posted above. I realize that the numbers aren't the same as what Warwick says, so please follow Warwick's instruction rather than what appears on the table. The graphic is simply to help you better visualize what Warwick is talking about

Neither the SmartVest nor the ICS can have dial frequency and dial pressures settings with too great a variation for the preparation of a table for adjusting dial pressure with the dial frequency. The SmartVest System has such a high increase in vest pressure as frequencies are raised that the pressure to use for each frequency will have to be individually determined for each patient.

The ICS system jacket pressure has a large drop in vest pressure as frequencies are increased so the RespirTech Inc's guidance should be used. Using the QuickStart ramp with frequencies going up and down, 6 to 14 Hz and back to 6 Hz, wit the highest pressure that can be tolerated over the five-minute cycle is proving to be very effective. The goal is to have the patient use 100% of power.

When the patient first starts HFCC therapy I recommend rechecking the pressure columns after several weeks because strengthening of the chest muscle may make a higher pressure column a better choice. I will be very pleased to hear from patients about their experience.


THE INCOURAGE SYSTEMtm

The InCourage Systemtm and the Model102TM use valve systems rather than a piston equivalent pressure system to generate the HFCC compressions. Therefore we used the Model 102TM best frequencies we compared this triangle waveform versus the Model 103tm symmetric sine waveform ( Milla CE, Hansen LG, Weber A, Warwick WJ. High-frequency Chest Compression: Effect of the Third Generation Compression Waveform. Biomed Instrum Technol. 2004 Jul-Aug; 38(4):322-8). With the triangle waveform was used with frequencies 6, 7, 8, 10, 11 and 14 Hz frequencies with the highest tolerated pressure. With the symmetric sine waveform using the Model 103tm these patients used the 103 table to adjust the pressures with the frequencies 6, 8, 9, 18, 19 and 20. [U]The patients using the triangle waveform system produced an average of 22% more sputum than with the sine waveform. [/U]

I recommend that the InCourage Systemtm Quick Start program start at frequency 6 Hz and go up to 14 Hz and then back to 6 Hz over five minutes:... then to stop the pulsations for a brief time to cough. After coughing, the patient will repeat these steps five more times. Each ramp provides a virtual 3000+ frequency, in sequence, pulses from low to high and high to low during each 5-minute cycle. All the airways, regardless of dimensions, will have optimum frequencies plus harmonics and hypo-harmonics many times throughout each cycle.

The InCourage Systemtm has a unique range of pressures. Pressures 10% to 50% have been designed for babies and very small children. The use of these pressures should be considered experimental because we have not yet studied this use. At this time, I recommend that these low pressures should be used only under close medical supervision since accidental use of these pressures by toddlers and older patients show that, for users after infancy, these pressures are too low for effective airway clearance of sputum.

So far we have found that with every constant pressure setting the InCourage Systemtm jacket pressures decrease as the frequencies are increased. Each patient should test a pressure setting over a "Quick Start" ramp cycle to determine the highest pressure that the patient can tolerate over the cycle. The cycle is hardest to breath at the start and end of the cycle and easier during the middle of the cycle. My goal is to have all patients using 100% of the machine pressure. I recommend that patients 4 years and older start at 80%. For younger patients I recommend starting at 70%. No patient should use pressure below 70% for therapy although 60% may be used to accommodate small children to the feel of HFCC. I recommend working with the patient to adapting the 100% pressure..

The InCourage Systemtm and Models 103tm and 104tm and the SmartVest have collectively and successfully been used by over sixty thousands of patients for over 28 years with success, mostly without my guidelines. Never the less when one of these patients tries these recommendations I frequently hear that their system works better. These guidelines are the best guidelines I have developed.


THE VEST/JACKETS ARE ALSO VERY IMPORTANT.

At this time, only RespirTech has specific directions for the measurement of the patient and the adjustment of their jackets to fit with the vest circumference/chest circumference ratio is about 110%. Regardless of the HFCC system every patient's vest/jacket should fix the 110% circumference ratio by means of safety-pins or re-adjust the circumference ratio fitting to about 110% with every use. The safety pin fixation should be checked when the patient has grown, gained weight or changes the clothes that are worn during HFCC therapy. For all machines, the vest/jacket should cover all of the rib cage, from the collar bones down to the lowest ribs, with the un-inflated circumference of the vest/ chest circumference being about 110%.

If an increase of pressure alters breathing or breathing becomes uncomfortable, assume that that pressure is, at least for a while, too high for daily use. This may require daily testing of pressure, see above. Keep in mind that, as the airways become cleaner, higher-pressure pulses the patient's breathing may become less comfortable and effective.

Our basic science research has developed much of the information discussed above and confirmed earlier work. We are studying the Minnesota HFCC technology that has built or inspired the development of the Models 101tm, 102tm, 103tm, 104tm, 104tm, the SmartVest and the ICS systems. Graduate students working in the Minnesota Defense of The Lungs Project have earned three MS degrees and one PhD degree with two more PhD's expected later in 2007.

Our laboratory research ranking of estimated effectiveness, which will need to be confirmed by CF patient studies by other researchers and, is that the ICS > Model 103tm > Models 104tm and 105tmand the SmartVestTM which we assume to be equal because all three have almost identical asymmetric sine waveform output.

Your observations and questions will help us define tasks to solve and will help us improve all forms of HFCC.

My expiration date for these recommendations is March 27, 2008.






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Tuesday, August 5, 2008

Warwick's Letter after my visit in 2006

This is a re-posting of Warwick's Letter to me after visiting him in September 2006. I wanted to have his whole letter in one place instead of multiple blog entries.

Even if you've read the Letter before, it's wise to read it again. You'll be surprised about how much you've forgotten.....


Just to re-iterate .... the words that follow come from a letter that Warwick sent me in the mail after my consultation with him. To my knowledge none of this has been published (unless he refers to a specific publication in the letter). I am posting this in the spirit of information for my fellow CFers from a man who has been instrumental in extending all of our lives. I am posting it for everyone because I believe that Dr. Warwick believes as I do that information can help CF patients improve the quality of their lives as well as longevity. All words that follow are Dr. Warwick's words and his words only. Even the grammar and spelling errors :-P



-----------------------------


So I received a 39 page letter from Warwick yesterday.

The first few pages detailed our visit...and then rest covered his theories on all aspects of CF.

So I'm going to re-type some of his points on here so you guys can hear his words instead of mine. Of course the overall theme is the same, but stil highly educational.

He starts the general discussion portion of the letter by saying:


"These thoughts are based on over 45 years of caring for patients, parents and families with CF and by the wonderful questions that have been asked during these consultations. But be careful, do not consider what I believe and say about the treatment of CF is the "right" or "only" way CF care should be given. There are many very good opinions of very good CF doctors that are diferent from my opinions.

"When you share these pages with your CF doctors I hope that they will not be offended by a different opinion I have discussed with you or have wirtten in this letter if what they do differs from what I do. If all doctors were to think the same then only onew ould be needed and we would never improve treatments or the future for patients with CF.

"Remember the old English saying: 'Opinions between good men is knowledge in the making.' So as your physicians disagree with some of the things I have written; knowledge is in the making.

GOOD THINGS ABOUT CF

"I have my own answers, based on observations I have made while caring for over 1000 patients.

-Children with CF are on the average smarter than other children
-They have better lungs before they acquire the CF associated with airway disease
-CF is not a disease


IF CF IS NOT A DISEASE, WHAT IS CF?

"The facts are that the clinical diseases associated with CF have the common origin in the inheritance of a mutation in two CFTR genes, one each from father and mother, that these two inherited genes produce an increased risk for the person to acquire a large number of diseases. These diseases are common in the general population and include: bronchitis, pneumonia, sinusitis, nasal polyps, pancreatic insufficiency, diabetes, male infertility, and less frequently cirrhosis, symptomatic gallstones, and even kidney stones.

"The assumption that comes next is that acquired diseases can be pevented or controlled with currently available treatments. While the inheritence of CF brings such a large risk to develop the large number of unwanted problems, there is a good side to this information. Both the person who has the genetic CF and the CF doctor know, once the diagnosis of CF is made, which specific illlnesses are at risk for and so can take preventative precautions.

" CF patients are not alone. Everyone has at least a few unknown genetic risk factors for other diseases but, not knowing the diseases at risk, do not know what the risks are. All of us have no idea of what actions might be taken to prevent such potential problems."


SOME BACKGROUND INFORMATION

"The name of this genetic problem should return to the orginal name [B] Cystic Fibrosis of the Pancreas [/B] The generic use of preventative pulmonary treatments has demonstrated that CFP patients can grow old with pulmonary function tets are in or above normal range. But these patients are similar to the rest of the CF patients: about 97% have pancreatic insufficiency, over 20% have diabetes and another 20% have two hour glucose levels characteristic of pre-diabetes. They and their CFP doctors have ben diligent in prophylactic pulmonary treatment and perhaps a bit lucky.

"When I started working with CF the life table survival age was two years and now, at the Minnesota CF Center, the life table survival age is over 48 years. I believe the philosophy of prescribing the known preventative treatments to try to prevent as many of these problems as possible, the Minnesota CF Center's practice, is the reason for our Minnesota success. I am certain that the most effective approach is vigorous airway clearance started at the time of diagnosis and continued twice daily. This is now built around our prescription of high frequency chest compression therapy starting as low as 12 months of age. "

OK there are a million more topics such as HFCC, Mucomyst, Steroids, Inhaled Antibiotics, Coughing Technique, Weight, Exercise, Enzymes, etc that I promise I will type about in the coming days. Some of it will repeat what I have already typed, but it will be Warwick's words instead of my memory of them :)





High Frequency Chest Compression

"The three HFCC systems manufactured today are the sine waveform HillRom Moden 104 and the ElectroMed SmartVest and triangle waveform RespirTech inCourage System. The Advanced Respiratory Model 103 is as of 2006 still used by over half of the patients using HFC. The following recommendations for the Hill/Rom Model 104 and the ElectroMed SmartVest are based on the similarity of the mechanical systems and the sine waveforms generated by their pulse generator machines.

"The positive aspects of using HFCC therapy include: the simplicity of the HFCC technology, the ease of use, and that is always works 100% of the settings on the dials over the whole time of therapy and for the older patient is always available. HFCC will forever provide better treatment than other effective techniques including manual chest clearance, Autogenic Breathing and Active Cycle Breathing because, until it wears out, will always deliver 100% what each system can deliver. My experience with the Flutter and Acapella is the technique is critical, that they are seldom used well and that they waste time, money and the opportunity for doing better HFCC airway clearance.

"HFCC works most effectively when a patient inhales slowly and deeply (this also lowers the blood pressure). Exhalation should be passive. The patients should breath through the nose so that the chest compression oscillations in the airways will also oscillate air in the nasal passages. Patients should pause to cough (see the section later in the these pages) after every five or six minutes of HFCC therapy. I recommend 2 daily HFCC therapies in sessions of 30 to 36 minutes each for routine preventative therapy with an increase to 3 times a day during times when the patient has a worsening lun problem.

"All sine waveform vests must be inflated before HFCC can state. Becuase the inflation compression reduces the patient's lung volume breathing becomes difficult. Thus every breath requires extra energy and use of more muscles. As inspired air increases the volume of chest, the volume of the vest decreases; the result is increased pressure in the vest making it heard to finish that breath. The less air in the lungs the less effective is the HFCC oscillation of the air in the airways.

"Patients hsould puase to cough every 5 to 6 minutes of HFCC therapy. With the HillRom Models 103 and 104 and the SmartVest "sine waveform" machines the patient must remove a connection tubing from the vest, or the machine, in order ot remove the chest restriction and so to be able to take the full breath required for best coughing. The SmartVest is the only sine waveform machine that reduces the vest pressure to atmospheric when compression pulses stop (claim of ElectroMed which we have not confirmed). With Model 101 and Model 102 "square waveform" machines and inCourage System "triangle waveform" macine the vest pressure drops to atmospheric when the vibrations stop so a tube does not need to be detached.

"The Minnesota clinical prescription for frequencies to be used with the 103 sine waveform the HFCC machine was developed over 16 years ago and remains our prescription for all sine waveform HFCC machines. We tuned 100 patients to find out the best frequencies for the compression induce volume and air velocity with each compression for each frequency. We found a wide scatter of 'best' velocities and volumes; sometimes with several frequencies having almost equal 'best' values. Every frequency was a best frequency for some patients. For the 103 machine the largest volumes were under 10 Hertz (Hz) [times per second ] and the highest velocities were 15 to 20 Hz. With the 102 machines both the best flows and volumes were 6 to 15 Hz (different frequencies should be prescribed for different high frequency chest compression macines. Biomed Instrum Technol. 2006 July-Aug; 40(4):319-24.) The triangle wave form produced by the inCourage System frequenices have not been tuned by laboratory studies predict that the range of frequencies will be the same as for the 102 machine.

"When we started prescribing HFCC wih the Model 1 and then the Model 2 we shortened the therapy time from 60 for the manual percussion treatment to 30 minutes using the three highest velocities and the three largest volume frequencies (frequencies 6, 7, 8, 11 and 140 for 5 minutes each followied by three coughs; and to save more time we prescibed Mucomyst aerosols to be used during the 30 minutes of HFCC).



Pressure and Frequency Interactions

"Model 101 had only one pressure so no interaction should occur.

"Model 102 had five pressures over a small range and most patients used only the highest pressure for all frequencies. No interaction was reported by patients or parents.

"For the inCourage System I recommend ramping frequencies from 6 to 15 and back (15 to 5) under computer control over six minute periods. This covered completely the range of best frequencies from teh Model 102 machine. With the inCourage System we have observed a mirror imagine of the jacket pressure than that we observed with the Model 103, i.e., a decrease in the MOdel 103 with the increasing frequencies. Our adjustment is to recommend the use of the histest pressure that can be used without difficulty breathing at frequency 6. This varies a lot for one four year old using pressure 80, the third highest pressure, without difficulty.

"For the Model 103 the interaction was first recognized by patients who reduced the dial pressure when they used the high frequencies. After years of patients' complaints Lee Hansen and I measured the relationship between frequencies and pressures and the percent of pressure transfer of vest pressure that was measurable at the mouth. We found that the pressure we mesured in the mouth/vest ratio was reduced by about 30% the percent of the highest measurement. using that information I developed THE MINNESOTA TABLE FOR FREQUENCIES AND PRESSURES for reducing the pressure when higher frequencies are used. My advice for pateints using Model 103 (or any sine waveform syste) is to adjust frequencies and pressure using the Minnesota table using preferred frequencies 6, 8, 9, 18, 19, 20. " (Note that the table below is a visual representation of the Minnesota Table. Frequencies and pressures shown in the graphic aren't the same as what Warwick recommends.... the table is just to help you better understand the information that follows below. Also, please see Warwick's 2007 letter posted on this blog for further clarification about the Minnesota Table)



"For the sine waveform machines the pressure column is determined by starting therapy with frequency 6 and pressure 3. Then after several breaths increase the pressure to 4 and if the patient ontices no difference go to pressure 5 continuingly testing higher pressures until the patient notices that with the new pressure it is harder to breath. That lat pressure is too high for frequency 6

"The pressure lower determines the column to be used to reduce the vest pressure at higher frequencies. For example, if the patient notices a difference in breathing with pressure 7 then use pressure column D for all frequencies. This should be checked twice a year for a growing child in good health and more frequently if changes in height or growth or health are significant.

"The inCourage System uses a new valve that interrupts a constant flow of air from the machine into triangle wave forms of energy.We did one clinical study with an early very large prototype machine comparing the effectiveness of new trangle waveform versus the sine waveform. The triangle waveform, using the frequency recommened for the square waveform machines and a pressure that did not make breathing difficult, produced an average of 20% more sputum than the sine waveform delivered using the table to adjust pressures to avoid difficulty breathing. We know now that the assumptioms for choosing presures used for the triangle waveform were wrong. This produced lower pulse pressures, the pressures that move air through the airways, instead of staying constant when that formula is used for the sine waveform system.

"I recommend that the inCourage System have a default program to start at frequency 6Hz and go up to the 15Hz and then back to 6Hz over fie minutes. This would eliminate the need to get another 100 CF patients to have the best air flow rate and velocities and so to prescribe specific frequencies. By using 3000+ frequencies in sequence from low to high and back treatments would covera ll of the frequencies in range best frequencies for the other valve machines making treatment very simple. So that all the patients would have to remember would be to cough after each cycle and to repeat these steps five more times. Another advantage is that regardless of the dimensions of any airway it wil ahve treatment with optimum frequencies plus harmonics many times throughout each cycle.

"The inCourage System has a unique range of pressures which, as of Sept 2006, have only been partly evaluated. The pressures 10% (of the max pressure in the machine) to 40% were designed for babies and msall children and should not be used by a child over 12 months of age without a doctor's or therapist's presciption and close monitoring. Probably no patient over one year of age should use a pressure under 50. These directions still require study before I can make a validated recommendation.

"Knowing that we had to evaluate the relationship of frequencies and pressures with the new ICS we found in less than 6 months, that with a constant machine pressure the ICS Jacket pressure decreases as frequencies are increased. This is the reverse of the sine waveform machines were the pressure in teh vest increases through the machine pressure setting is constant and which it took over * years to discover the relationship.

"The following adjustment is effective but, I expect, will be changed during the next year. The inCourage System's wider range of pressures has four settings (10%, 20%, 30% and 40%) that are lower than the lowest pressures of all other HFCC machines in anticipation of th eneed for preventitive HFCC starting in infancy. The pressure range 50% to 100% covers the dial number range 1 to 10 inall other HFCC machines.

"I recommend that patients start with pressure 50% and after each 6 minutes ramp cycle pause to cough. then after this first pressure cycle increase the pressure to 60% for the next cycle repeating this until a pressure is found that was hard to tolerate. That pressure may be too high so the patient should use the last pressure the patient tolerated and used for every treatment. If the pressure 100% is tolerated that is the pressure to use. Occasionally, perhaps every 1-3 months, check that the next higher pressure is still not tolerated.

"The inCourage System jacket is designed to fit effectively when applied as directed with a jacket/chest circumference ratio of 110% to 120%.

"I have not seen satisfactory recommendation for prescribing the vest size or tightness for Models 103 and 104 or the Smart Vest. For these machines I recommend that you measure the greatest circumference of the chest (just under the arms or at the lowerest part of the ribs above the abdomen). Adjust the standard vest to circumference, that, when deflated, is 110% or 120% of that the torso circumference and then put safety pins in the straps so that they will not loosen. use that fitting of the vest until he grows taller or heavier.

"These guidelines for the sine waveform machiens are a good way for respiratory therapists to help patients with thes emachines to find the pressures and to use the frequency in the Minnesota Table. An unsolved problem is that larger pateints, who need larger jackets, will require higher dial pressures. Another problem is that some of the new HillRom vests have several large metal holes that leak so much air that patients using these vests may be able to use the highest pressure and frequencies without effort or discomfort. I believe that ehse vests will give inadequate HFCC treatments. This assumption is an assumption that we will study when a supply of these leaky vests becomes available to our study.

"Our basic science research is done by the Electrical Engineering Graduate Students who, working on the Defense of the Lungs Project (DLP), have developed much of the information discussed above and also confirmed earlier work. In the DLP, we are studying the Minnesota HFCC technology that has been built into the Models 101, 102, 103, 104 and the ICS systems. So far ElectroMed has declined to donate one of their SmartVest machines with the vest for our study.

"The DLP so far has produced three MS and one PhD degrees. Their labroatory research ranking of theoretical effectiveness (this will need to be confirmed by patients and patient studies) is that the ICS>Model 1 and 2> Model 103 > Model 4. The first independent clinical study under way to compare the ICS and the Model 104 was designed before we learned of the relationship of machine pressures and frequencies with the ICS is the reverse of the Model 103. With the Model 103 breathing becomes harder as pressure is held constant and the frequency is increaed. With the inCourage System breathing becomes easier as pressure is held constant and the frequency is increased. With the Model 103 the dial pressure must be decreased to keep the pressure in the vest close to constant whereas with the inCourage System the dial pressure must be increased to keep the pressure in the vest close to constant.

"All of the HFCC machines work. They have been effective in almost every way they have been used despite that most of these ways have been less than optimal. We are aware of no adequate studies comparing any HFCC machines because no adequate research has been performed to find the optimum way to use each machine.

"My directions are based on clincal observations plus parents and patients' experiments. These directions are effective but they may not be optimal. Such studies are needed because of the high cost of thes emachines and their durability and the essentiality of optimum airway clearance to growing old with healthy lungs.

"Clinical studies should have been done to compare the effectiveness of Model 103 and Model 104 before the change was made. This may have been because our unpublished laboratory studies may be interpereted as suggesting that the old Model 103 may be more effective than the old Model 104. So no dustides have been possible to demonstrate the best way to use eithe rModel 103 or Model for pateints.

"All bench and laboratory studies for HFCC equipment need to be studied in either clinical studies as critially planned as the labroatory studies. When the lab studies have been translated to the best way to use each machine on patients then studies can be done to compare teh different machines used by patients.

"Meanwhile I want to hear of your observations or questions concerning your HFCC system, regardless of the kind, because the DLP Lab continues to study all available machines regardless of waveform. We are comprehensively studying Model 101, Model 102, Model 103, Model 104 and the inCourage System (we are not studying the MedPulse or the SmartPulse machines because, so far, the company that makes them will not give us machines or jackets for our research). Your observations and questions will help us defnie tasks to solve. Our sultions to your observations or problems will improve all forms of HFCC.

"I will reply to your observations or problems with whatever HFCC system you are using; if possible provide a suggestion or suggestions concerning your use of your HFCC which you should discuss with your CF Doctor before trying them. You know yourself best, your CF doctor knows best the medical and scientific problems that you have, so even if I know HFCC best, the best application of any suggestions I make should be worked out by you with your CF doctor.

"There are times HFCC needs to be increased to three or more times:

" 1. The start of a cold. My recommendation is to start an extra HFCC therapy a day at the start of a viral respiratory illness and to continue the extra therapy for two weeks. About 10 to 12 days after the start of a typical viral illness the boyd's immune system takes a day or two of rest after fighting tihe virus. During that couple of days a bacteria infection can get a head start and can cause a much more serious infection. The increased HFCC for two weeks will keep the airways less colonized by bacteria and clear out excessive bacterial growth until the immune system returns from the brief rest.

"2. When a new lung infection or worsening of a chronic infection occurs. I presscribe HFCC treatments three times a day with each treatment for 45 to 60 minutes until recovery. i favor three times a day because there is less iterruption of daily life than with four a day.


IT IS IMPORTANT TO DO TWICE DAILY HFCC TREATMENT EVERY DAY

"It is important to do twice daily HFCC treatment every day because risks are day-by-day events and prevention is a day-by-day process. The risk of a person without CF of developing a serious lung infection any day, based on published data, is about 0.01%. So the chance of staying well of not catching serious lung infection today requiring antibiotic treatment must be about 99.99%.

"I estimate the daily risk of a person with CF, who does not do HFCC treatment twice a day, of developing a serious lung infection every day requiring antibiotics treatment, is about 0.5%. So the chance of not doing HFCC treatments and staying well and not catching serious lung infection today is about 99.5%.

"I estimate the risk of a person with CF, who does HFCC twice every day, of developing a serious lung infection today requiring antibiotic treatment, is about 0.034%. the chance of staying well and not catching serious lung infection today is about 99.965%. "

He then lists a table which I can't quite duplicate here but I'll show the bottom line of table:

"Chance of being sick at least once this year if you have no CF: 4%. Chance of being sick at least once this year if you have CF plus HFCC Rx: 12%. Chance of being sick at least once this year if you have CF no HCFF Rx: 84%"

"Doing HFCC twice daily as prescribed can reduce the risk of a pulmonary infection 7.3 times as compared with not doing daily HFCC. A pay off of staying well, statistically, occurs about every seven weeks when you do HFCC daily."

I'll post more of the letter later :)





AEROSOLS TO TREAT CF

"Aerosol therapy has a long way to go before there is a general agreement for when to use, the time for each treatment, the medicines to be used and the equipment for delivering the aerosol. I try to avoid all aerosols that provoke coughing by irritation. Although many patients and physicians use hypertonic saline, I am only partly convinced because I suspent that the irritation induced coughing will occur mainly in the least affected airways andthat such coughing may injure the mucus membrane of the healthiest airways and eventually increase the severity of the CF associated chronic pulmonary disease (COPD). [See : Interpreting the Hisopathology of Chronic Cough: A Prospective, Controlled, Comparative Study; CHEST;, 2006; 130; 362-370]

"Keep in mind that almost all CF patients have a super strong ability to suppress coughing which they learned at home, at school, at concerts, at movies, in crowds and at curches and other places. The balance between structured coughing, irritation induced coughing, and spontaneous coughing and the subconcious learned suprsession of oughing is an area in need of more research. It is one area where patients and families with CF can do their own experimentation.

"I have prescribed the following aerosol during each vest therapy for over 30 years with such good success that it continues to be my choice as the most effective aerosol for CF:

"-Mix and nebulize for aerosol treatment:
-Mucomyst 20% 4mL
-Albuterol unti dose (2mL ampoule) 1 vial
-Intal unit dose aerosol (2mL ampoule) 1 vial

"This yields 8 ml of a 10% solution of the Mucomyst which can be nebulized in less than 30 minutes with a good nebulizer. I recommend stopping the aerosol when the nebulizer begins to sputter. The mixture provides anti-inflammatory, bronchial dilation, mast cell stabilization and reduces sputum.

"(The mucus in the airways is dehydrated and becomes functionally normal by the addition of water. There is no molecular abnormality of CF mucus. Since CF mucus is normal any treatment that will change it will most likely destroy the ability of mucus to protect the airways.)

"The 20% Mucomyst is concentrated enough to irritate airways in some patients so that I prescribe diluting it to 10% with albuterol and Intal. The albuterol main action is to assure dilated airways to improve the deep deposition of the mucomyst. The Intal's main action is to counteract the high probability (about 40%) that allergies and mast cells may interfer with treatment.


AN ALTERNATIVE WAY TO USE n-ACETYLECYSTEINE (MUCOMYST)

"The benefits of Mucomyst aerosols are sometimes offset by the odor of the aerosol which resembles rotten eggs, the stickiness of the not inhaled Mucomyst, which can interfere with function of table top computeres, television sets and other electronic equipment, and the risk of bacterial infection if the nebulizer is not carefully sterilized daily. Some of my patients have substituted three times a day of oral n-acetylcysteine as NAC capsules size 600 to 1000mg or, two or more teaspoons of 10% solution of Mucomyst or one or more teaspoons of 20% solution of Mucomyst.

"Some of these patients still benefit from the use of Intal and occasional bronchodilator inhalations by means of metered dose inhalers. Some of these patients do not use any; aerosols except antibiotics.


GLUTATHIONE AND HYPERTONIC SALINE AEROSOLS

"Glutathione is a combination of three amino acids: glutamate, cysteine, and glycine. Cysteine is the active amino acid in this molecule. NAC is a more stable form of cysteine because it has only an acetic acid group attached. NAC is more water soluble and is the most cost effective way to increase glutathione levels in the body. N-acetylecysteine in solution is sourer than glutathione but NAC comes in capsules.

"I recommend oral or aerosol n-acetylecysteine over oral of aerosol glutathione. I have used Mucomyst for aerosols for many years. I have been encouraging patients to expiment with oral NAC capsules. The cysteine amino acid part to both molecules provides the antioxident, antiinflammatory and mucolytic actions of both molecules.

"Hypertonic saline increases the water in the periciliary fluid. It does this by attracting water to reduce the hypertonic saline to normal saline concentration. This extra water floats the mucus high enough that the cilia can beat and move the mucus out of the lungs. This activity lasts until the hypertonic saline is diluted to normal. I do not know how long it takes for this to happen.

"A balancing consideration is that our studies have showed that the regular twice a day use of HFCC with either the square or triangle waveform machines will increase the water content of water in the sputum for at least 12 hours after the last regular twice a day treatment. While the published studies show the immediate effectiveness of the hypertonic saline aerosols I prefer the HFCC method since it couples the increase of water on the mucus membranes with the removal of that mucus as well as round the clock effectiveness.

"I have been so very satisfied with our Mucomyst aerosols taht I have been slow to experiment with hypertonic saline. However I have one patient who had an unusual problems with airway clearance after a shelf full of supplies fell on her and broke her back. After 3 years of poor response to surgery and other treatments (her back was too painful that she could not tolerate even low pressure sine waveform HFCC therapy) show a very significant improvement of all her pulmonary function tests. Based on this observation and the good resports in the literature I regard hypertonic saline aersol as a therapy worth of physician and patient experiment as an addition to, but as a replacement for Mucomyst. My current appproach would be to recommend only 3% saline.


STEROIDS AND STEROIDS INHALATIONS

"Prednisone is often prescribed to reduce the inflammation in the airways and so reverse inflammation with the hope to restore and even preserve lung function. It works so well and so quickly that it is easy to have prednisone become a fixed medicine. When used for long times prednisone can cause unwelcome side effects; especially related to childhood growth, control of blood sugars and density of bones even with indefinite cycling between high and low doses. Rapid withdrawl can lead to recurrence of the symptoms treated. There is no perfect way to withdraw from prednisone dependence. I have had success allowing a child to outgrow the dosage over some years or more rapidly by decreasing the daily dose by 1 milligram per week or per month.

"Many pphysicians belive inhaled steroids are safter because their action is mostly in the airways where it is needed. Still the lowest effective dose is desired. Physicians usually start with the highest dose and somtimes forget to see if the benefits can be maintained witha lower dose...... Aerosol steroids also carry a steroid risk and so the lower the dose that works the better. Read the package insert about the risks, the side effects and the recommended doses and the duration of treatment....Discuss the inhaled steroids with your doctor, especially if you have another source of steroids such as by dermal, nasal or oral route.


AEROSOLIZED ANTIBITIOCS

"Antibiotics are prescibed to help treat a serious lung infection. Much has been and is being written concerning aerosolized antibiotics. If your doctor prescribes such treatment be sure you understand what the intention is, how to prepare and store each antibiotic, how to use it, how to clean and maintain the equipment, what to expect for a benefit, what adverse events to watch for, etc. [U] Always rinse your mouth with water after each antibiotic aerosol. [/U] "





PULMOZYME AEROSOL

"The Minnesota CF Center aggressive aerosol treatment component of preventive airway clearance protocol largely excludes Pulmozyme. My observations suggest that Pulmozyme benefits only 1 in 10 patients who also use Mucomyst aerosol.

-Milla's observations showed when pulmozyme was added to teh treatment of a hundred such Minnesota patients, that these patients had a more rapid drop of FEV1 than their matched patients who did not use Pulmozyme http://thorax.bmjjourn...om/...../12/10tm4).


http://thorax.bmjjournals.com/...t/53/12/10tm4


http://thorax.bmjjournals.com/cgi/reprint/53/12/10tm4



-Suri, in The use of human deoxyribonuclease (rhDNase) in the measurement of cystic fibrosis.BioDrugs.2005; 19(3):135-44, reports that "the response to treatment is heterogeneous and only a proportion of patients with CF actually benefit from the treatment."

-Rochat et all. suggests a mechanism for rapid worsening when using Pulmozyme aerosols http://erj.ersjournals.cgi/reprint/9/11/220.

-Cobos, et all European Journal of Pediatrics, 159: 171-181, February 2000, found "benefits of DNase in daily practice are limited but apparently can be maintained in the medium term in some patients... the benefits are doubtful in around 50% of patients".

-Barker, et all, Pediatric Pulmonology 38: 70-74, May 2004 found "improvement of exercise performance with DNase is restricted to a subgroup of CF patients and may not be predicted or identified by spirometry and subject report alone."

"If your doctor prescribes Pulmozyme aerosol, discuss these papers with her. To be fair, on the positive side, Pulmozyme has a record of imporoving the lung function for many patients when these patients who have not had an effective aerosol treatment, such as Mucomyst, and when the Pulmozyme was compared to "normal saline" aerosols.

"I believe that Pulmozyme may have an adverse effective for some patients who are having rapid loss o flung function. I recall observing, during my early prescription of Pulmozyme, three patients who coincidently developed a rapid worsening of lung function when using Pulmozyme. I believe the rapid loss of pulmonary function might have been a possible adverse effect of Pulmozyme. If such a coincidence occurs I would investigate the possible association so to be able to confirm or rule out a provoking association of Pulmozyme with such a coincidental worsening of a present infection. My observation of only infrequent benefit and my concerns about the possibility of an uexplained rapid worsening of lung function in a rare patient using Pulmozyme have biased me to prescribing Pulmozyme to less than 1/10th of patients, for whom I have proven improved lung function with Mucomyst aerosols.

"On the positive side Pulmozyme is a wonderful enzyme designed to break the long molecules of DNA into very small pieces. A solution of DNA is very, very viscous. A solution of the Pulmozyme broken fragments of DNA is very thin and runny. The first solution is very hard to move with a cough; the second solution is so watery that almost any force, even gravity, will move it.

"Picture what might ahppen when a patient with CF coughs with or wihout Pulmozyme is airways when a coughing spasm occurs. Such a coughing spasm will lead to an emtpying of the air from the lungs that is so completely that the smaller airways are closed. Without Pulmozyme, the thick mucus will tend to adhere to the airway wall and the coughing may deform the cartilage and predispose to the development of bronchiectasis as the adjacent cartilage is injured. Such an event is good reason why control cough needs to be learned by patients and parents. Such a consequence of a coughing spams may be a common injury when patients not using Pulmozyme have a coughing spasm.

"Consider another possiblity that might appen when a CF patient using Pulmozyme the thin and running sputum develops a coughing spasm. Then instead of damaging the bronchi what happens may be like the changes in a tooth past tube that is squeezed in the middle. I see an event parrallel to the simultaneous application of toothpaste aplied to the tooth brush with some tooth paste going deeper into the tube. If that parallel event happens in the bronchi the thin and runny liquid of DNA fragments and bacteria might be forced deeper into the airway branches, spreading the bacteria and infection. While such an event may occur rarely and only in a patient taking Pulmozyme such an associated rapid progression of loss of lung function may be looked on as a new, unlucky and unexplainable event that has to be treated with more antibiotics. "



COUGHING TECHNIQUE

"That coughing is important and should be taught from diagnosis of CF. Even infants with no detectable lung idease need to be encouraged to cough frequently. how this can be done is ap roblem that parents of infants and preschools children will need to help us figure out because physicians and physical therapists do not know how to teach children how to cough and to cough regularly to keep their airways free of excess sputum. this will have to be your experiment since I have seen no such medical studies.

"Coughs compress the chest, narrow the airway diameters and force the expiratory air to flow through these airways at high frequencies. This moves sputum towards the mouth from which it can be spit out or swallowed. Every patient who has the CF genes needs to develop a style of life in which coughing many times a day can be done is such a way that their peers do not notice or ignore the coughing.

"All CF patients need to learn to [B] NEVER [/B] supress a cough. Cough supression is a dangerous accomplishment. Not to cough in order to be socially acceptable is not acceptable. The goal is to earn how to cough frequently so no one notices the coughing.

"The way to stop or prevent a coughing spasm is simple; just hold a breath for a few seconds.

"A patient can learn to prevent a coughing spasm. First to feel how much air is in the lungs at the end of a quiet breath, the functional residual capacity (FRC), when all airways are normally open. Second, learn to fill the lungs to total lung capacity (TLC) by actively increasing the volume of the thorax. This will insure that all the alveoli behind each partly blocked airway will be filled full of air to push the mucus out with a cough.

"The classic direction to fill the lungs is to tell the patient to take a deep, or big, breath. The quick breath that follows with linflate the alvoli distal to the open airways but not the alveoli that are distal to the partially obstructed airways. The following cough will clear the clean airways well but not the partially obstructed airways unless the patient holds his breath for several seconds before coughing to permit the air in the inflated alveoli be transferred to other alveoli that are behind the mucus in their airways. That extra air will make the cough more powerful and effective.

"The best cough to learn is my Improved Cough Technique.

"Normal coughs fill the alveoli least that are beyond sputum in the airways and most beyond the airways that have least sputum. The result is that the healthiest airways get the most power and cleanig. My improved Cough Technique gets an equal amount of air into the alveoli behind the most sputum in the airways. It uses regular normal inspirations but instead of exhalation the patient holds the inspired air in the lungs. When the inspiratory muscles relax the pressure in the alveoli becomes greatest in those that are beyond the least sputum causing some of the air to be transferred to the alveoli behind the most sputum. By continuing inspirations without expiration the lungs become inflated with equal amounts of air in all the alveoli. At this point the air behind the most sputum pushing the sputum which irritates the airway and causes a cough that clears the sputum that is least moved by usual coughs.

"Fill the lungs using a serious of regular breaths with a normal pause without expiration after each regular breath. The imprtant parts are the holding all the inhaled air in the breaths and then simulataneous pause so that the inhaled air can equalize throughout the lungs and air flow from te full alveoli to the less full alveoli and also enlarging the airways that are coated with non expectorated sputum. As the lungs fill closer to total lung capacity enough air will get behind the ucus in the airways and a cough will "happen." Practice filling the lungs may be the best way to clean the airways because a cough always happens even in "normal" lungs because all lungs have some sputum.

"Another point to consider in a recent paper, "Interpreting the Histopathology of Chronic Cough" (CHEST 2006; 130: 362-370) which demonstrates the association of airway inflammation associated with chronic cough. These author's observations do not cancel my suggestions that CF patients cough too little; they do cough too little. Their observations come fortuitously with my development of the Improved Cough and my arguments that CF patients need to cough more.

"Three of my Improved Coughs after each HFCC frequency or ramping cycle should always stop at FRC. My Improved Cough method preserves the magnificent power of the cough to clean the airways and never damages the airways or pushes mucus deeper in the airways.

"Patients using the Model 103, Model 104, the MedPulse and the SmartPulse machines must disconnect a tube at the end of each frequency when the vibrations are stopped to remove the constant compression of the chest. The Model 101, Model 102 and the InCourage System ahve no background pressure when the chest compressions stop since the pressure in their jackets become equal to room air pressure when the chest compressions stop. So their tubes do NOT need to be removed."


Happy breathing. FIGHT ON

PARENTS AND PATIENTS ARE PARTNERS WITH THE CF CENTER TEAM IN THE FIGHT AGAINST CF

"Parents and patients assume partnership in the CF Care Team when they experiment with prescribed treatments and other directions. if they don't talk with the CF Center Staff or learn their plans or discuss their variations of treatment a major breakdown develops in what must be a joint fight against cystic fibrosis.

"One of the problems with experiments if how to decide whether they succeed, fail, or are neither a success or failure. There is a whole scientific and scholarsly study of how to dtermine success or failure. Here are some possible ways of telling whether an experiment is a success or a failure.

"Take changing enzymes for example. If the number of bowel movements have decreased, the stomach pains have disappeared and there is no more unexpected weight gain, then there is really no need to repeat the experiment.

"On the other hand, say you are looking at something like Pulmozyme and are trying to tell wehther or not there's a difference with or without it. Since most of your observations will be subjective, you might try to see if you get the same subjective result for give trials in a row, or if you get 9 out of 10 trials giving the same result. The basis for this is flipping a coin if you get heads give times in a row the odds are about one in such events in 32 tries. Statistically the chance of something happening less than 5% is considered a significant result.

"The more precise the numbers of a result, the more confident you can be that you have significant results. Examples might be counting the sleeping respiratory rate for one minute while your child is sleeping. If the average rate per minute over a week would be, when lower the sign of a better response and when higher the sign of a poorer response.

"Work with your CF physicians on designing an experiment to be done at home. Try to find ways to obtain numerical and therefore analyzable results. For example there are small scales that you can carry in the pocket and will measure weight down ti milligrams. These scales run on batters and, while not cheap, are affordable. Your CF physician may actually have one that could be loaned to you. As you try to experiment in the use of different machines, different pressures and different frequencies you might use a paper cup and measure the weight of sputum produced during each high frequency chest compression treatment. Your CF physician could help you do the statistics to determine whehter a difference in the amount of sputum produce was significant.

"If your CF Center staff does not ask about your experimentation ,or they fail to listn about an experiment, it will be hard to improve treatment. If the CF Center statff does not listne or recognize the importance of patients' and parents' experiments, does not pay attention to the experiments, does not try to understand the experiments, or does not find out what can be learned from the experiments and discuss how to improve future experiments, then there is a major breakdown in the joint battle against CF.

"Doctors are slow to learn from patients. Be patient with them and with the other CF Center staff. It took me learns to learn to ask patients (parents) what kind of experiments they are doing: to interpret their failures to comply with my directions as experiemnts rather than seeing them as being non-compliant and non-adherent. I try to discuss the value of experiments and how to improve experiments. I ask them to figure out what is a positive and negative outcome and to discuss with me their ideas about an experiment before they do it, if they do the experiment on their own to share their plans and findings with me so we can plan future home experiments.

"Doctors are slow to apply what they learn from patients. I was taught; I was fortunate enough to have Annalisa Marzotto as my personal teacher during the years I served as her physician. Annalisa determined that she knew more about herself, how my prescriptions and directions worked (if and when she used them), what she thought of them and what she decided might be changed. My shceduled 40 minute clinic sessions never lasted less than 90 minutes and often went 2+ hours. My lessions occured every two weeks. Annalisa knew that doctors seldom listen so she came prepared to ask questions as well as answer questions. But more imporant she had answers to questions she wanted me to ask and she would use her answers as the starting place for her questions such as:

"Why didn't what you recommended work?

"Why did what you recommended work differently than you expected?

"Could it be because....?

"Could we try it this way?

"Could we try this instead?

"Was that idea based on the wrong assumptions?

"Would this be a better assumption?

"How about this idea?

"What do you expect your idea to do?

"How will I know if your idea doesn't work?

"What do I do if your idea works differently than you expect?

"Why did you not do?

"Analisa made these clinic visits very exciting and I looked forward to everyone. Annalisa changed me to be a collaborator with her with the goal to control the most serious complications of a CF patient that I have ever cared fro. We worked together for over 15 years.

"I've used many of the things she taught me with other patients in a hap-hazard way over the years since she died. I never tried to make Annalisa's teachings a principle for care of all my patients until I have had the honor to being the consultant to many patients and families to came to see me after reading "The Bell Curve" in the New Yorker. I have seen have needed to hear about Annalisa and her wisdom frot he treatment of CF. As I consider Annalisa's wisdom, I believe her system of a patient (or a family) and doctor working together to treat the illness acquired because of the inherited CF genes is essential to living healthy and growing old with CF.

"This must be learned by each patient and family xperimenting to learn how this approach can work with their doctor/patient assoiation. This could become a project for patients and families to add to the annual family education days. Doctors do not have the urgency to accomplish this because each probably has 70 or more patients. But each patient has just the one doctor and so a one to one relationship must start with the patient and the diagnosis of CF in order to be successful. "

PRESCRIPTIONS

"Read the fine print that comes with every prescription. you'll find much information about the many side effects that an occur with ever medicine.

"Afte ryou ahve questions about CF, treatment variations, medicine on the internet and in the literature including even non-prescription preparations you should meet with your (your child's) doctor and discuss your findings and your concerns. you and your (or your child's) doctor have to work together concerning each prescription, how to recognize if it is working and how to be aware of side effects.

"Every prescription is an experiment. Your doctor expects that the majority of times you (your child) will respond the way the majority of patients respond. The information on side effects and the interaction of the medicine with other medicines are also important for your benefit. Some of the side effects or interactions with other drugs are of little importance. Others might be significant. When you think a side effect or drug interaction could be significant you need to discuss that with your (your child's) doctor."


COMMUNICATION

"You know your life style, your child's life style, successes and failures very well. You need to bring this knowledge to every clinic visit and develop partnership treatment plans with your CF Center doctor and staff that you agree are good and that you can do as your part of the battle against cystic fibrosis.

"This is the time for you to prtest if you cannot do what is recommended. If you don't do this, you will leave all the decisions and experiments to your doctor, who, as you know, does an experiment every time a prescription is written or a recommendation is made. Your doctor and your CF Center team will give you excellent care based on the published reports, all of which have been statistically vetted, and their personal observations when these have been tried on other patients. You need to speak up concerning any ways in which you (your child) differ from the patients in the reported studies.

"There is no greater problem in communication with your CF doctor than telling the doctor what you believe the doctor wants to know. Do not leave anything that might be important out of your replies to the doctor. Make sure that you tell al that has happened and tell the truth. Do not tell your interpretation of what has happened. If you leave something out or tell the story you believe the doctor would like to hear, your CF doctor will not be able to give you the recommendations, prescriptions and diretions that you or your child needs.

"Remember the published conclusions and recommendations have been formed using a Bell Curve like the one in the [U] New Yorker [/U] article. Every Bell Curve has a 5% high or low termination on each end. The middle 90% are considered to be [I] normal. [/I] Remember that 1/3rd of published papers will be improved upon or proven wrong in the next five years. Ine very study some patients will not have performed as well as the central "average" and some of the controls will have performed better than the central "average" that benefited. Be vigilant and talk with your CF Center and CF doctor."


OF COURSE YOU ARE PART OF THE CF TEAM

"Your activities and participation are of equal importance with the activities, directions and prescriptions of the CF Center's staff and physicians. The success of the CF Center is equally shared by the CF patients and families and the CF Center staff. You will need to work very hard, to insist on the communication needed to make this collaboration be successful.

"One way to be ahead when your child with CF is young and is asleep in bed and before you go to bed is to count the number of breaths your child takes in one minute. Since every lung problem increases the respiration rate, this 60 second number of breaths can give you the earliest sign that your child is developing a lung infeciton .Exceptions are a dream or a full stomach. Count the 60 seconds sleeping respiratory rate daily and graph the numbers to discover the usual rate and the range of rates. Then when yourchild has an increased rate assume that there is a lung problem or a dream. Count the rate again after half an hour and if the rate is still high do an extra HFCC treatment and call his CF doctor. The increased respiratory rate is the most reliable and earliest sign of an infection or other significant change in lung funciton.

"Consider 'The Bell Curve' since that title has brought many to the Minnesota Cystic Fibrosis Center. That title was an over simplification since the studies considered only survival, height, weight and pulmonary function tests. However many other 'Bell Curves' come with each patient starting CF care at each CF Center. Some of these 'Bell Curves' are age at diagnosis, the already acquired CF related diseases, their severity at time of diagnosis, the kind of CFTR gene mutations, the number of children in the family including children with CF, sex, family income, existence and quality of the health insurance, one or two parents (each with no, one or two jobs), air pollution, distance from the CF Center, availability and kind of HFCC technology, knowledge of how to use the HFCC equipment, and so forth. Each such 'Bell Curve' affects each CF Center's multiple 'Bell Curves' and if their contribution to each patient's health is not considered that 'Bell Curve' is suspect.

"You need to develop the communication skills that will place your role, as a patient or a parent, equal with your doctor's role as a caregiver, with both of you fighting the clinical problem of cystic fibrosis. You need to explain the hanges in your child's body and teh response to the prescriptions that are given. You need to develop enough of a background so that you can, with intelligence, discuss the treatments your doctor is prescribing. You need to know the potential side effects from any presctipion and the potential interaction between the different medicines. For example: if multiple antibiotics are prescribed: Are they to treat different bacteria? Are all need to treat one bacterium? Should you be taking all of them continuously? If so, for how long? For example; if you are taking short and long acting bronchodilators, how can you determine if you need both kinds?

"The battle against CF that you (as parent or patient) and your CF doctor and CF Clinic work together to fight, is only part of the worlwide work, whcih in the United States is largely focused through the efforts of the Cystic Fibrosis Foundation (CFF). Help the local, regional and national efforts to raise funds to supporr the CFF's planned programs. Remember the CFF supports your CF Center.

"You and your CF Center's doctors and staff have good ideas that also need to be studied and you also have smart questions that need to be asked concerning how to treat and how to understand the ways the risk factors for the CF associated diseases operate in your child's and your CF Center's unique environment. Discuss such questions with your CF doctor and how you can help them to do such research.

"All CF parents and patients need to be good observers, note keepers and reporters as they know themselves and problems better than anyone else. They need to keep notes of their observations and of questions so that, having them writen down, when you see your CF doctor you will not forget problems that, because they are important to you, they are also ciritical for your doctor to help solve those problems and to resolve your questions.

"This may be difficult because doctors have been given a fixed amount of time for each clinic visit, to answer questions, to discover problems that need attention, to review your treatment and the results of your chronicle of changes in your treatment, to order new tests to improve his understandings, to make recommendations and to write prescriptions, and most important to answer your questions about what you have learned about CF between Center visits. You need to bring all of these to your clnic visit and work out plans with the CF Center physicians that you believe are good and that you can do."


NUTRITION

"Since pancrease injury usually begins during pregnancy (severly enough ot produce meconium ileus in up to 10% of children with two CFTR mutations), causing pancreatic insufficiency after birth in about 95% of CF babies, nutrition problems are almost always a problem starting with their first feeding. So far that problem remains lifelong. For most patients everything that follows is colored by the problems of digesting and absorbing the digested food and of a diversity of potential malnutrition problems which range from night blindness (vitamin A deficiency), bleeding (vitamin K deficiency), osteoperosis (Vitamin D deficiency), failure to thrive and others well described in the CF literature. Pancreatic enzymes, extra fat solubl vitamins and essential fatty acid suppplementations are needed. Still there are controversies concerning their necessities and amounts. As excesses do not solve the problem of health, future studies will be needed to determine the optimum amount for health of each patient. For now the subject of indiviual optimum amounts is one for patients, parents and physicians to discuss.

"Later digestive problems seen in some patients include cirrhosis of the liver, gall stones, bowel obstruction, diarrhea, constipation, inussusception and gastro-esophageal reflux. These CF associated digestive problems respond to the treatments in patients who do not have CF.

"I worry about using supplements when patients are underweight because in almost all usage the supplement becomes replacement. Tube feeding is an occasional necesity which should be avoided if possible. Both gastro-esophageal reflux and inadequate or poorly used pancreatic enzymes can be causes of poor appetite and malnutrition.

"Perhaps the most common explanation of correction for malnutrition is the decision of the patient to eat more. The power of a decision, even though we don't know how to create the change in the patient's brain, has been the msot successful observation.

"There is a relationship between diabetes, a constant worry before and after diagnosis, and nutrition. I advise all patients to avoid all foods and liquids with sugar or high fructose corn syrup and to be wary of foods that have a high glycemic index. Fruit juice with meals may be reasonable exception to liquids with sugar, but eathing the whole fruit will be better. Restriction of high glycemic foods may be difficult when a patient with CF needs to gain weight. A concerned endocrinologist, preferably one who has or would like to develop expertise in CF related diabetes, may be needed in planning the diet for gaining weight. My concern about diabetes is real for already 1/5th of our patients have CF associated diabetes and almost another 1/5th have abnormal glucose tolerance tests. Another reason to avoid all soft drinks is the phosphate in these drinks can bind to calcium and so increase the risk of osteoporosis.

"I avoid fixed vitamin preparations for patients with CF unless they have B-xomplex and trace elements. I believe that CF pateints need larger amounts of beta carotene, vitamin E, Vitamin D, vitamin K, essential fatty acids, omega-3, vitamin B-12, folic acid, slenium, with perhaps more supplements to be discovered. I recommend the serum levels of vitamins A, E, and D be checked at least once a year. Beta caotene, the precursor of vitamin A, is my preferable source of vitamin A since the body produces the optimum concentration of vitamin A it needs any excess is a useful antioxidant. Your CF nutritionist dietician can help you study these needs.

"You may find Roger J. Williams' book, [I] Biochemical Individuality [/I], intersting. I have adopted his philosophical approach to optimum dose and nutritional side as the way to consider the nutritional approach for CF. "


WEIGHT

"I recommend that CF patients try to maintain a weight 10% above average for age and height using per hight at age 18 as the index for older patients. The extra 10% should provide the muscles for good activity, for metabolizing glucose and body mass reserve in case of a serious infection.

"Now after years of constant efforts to gain weight some older patients (and some very young Patients) are having problems with obesity. Gaining too much weight in childhood needs to be recognized before adolescence so that obesity does not become another CF associated disease. This is a special problem because both CF and obesity predispose to diabetes."


EXERCISE

"Exercise, especially aerobic exercise, is strongly advised throughout all of the European CF Centers. In Minnesota I have observed that CF patients can do very well in all forms of exercise and that their health improves in proportion to their enthusias for both aerobic and strength building exercises. I recommend such exercises with supervision. Several of Minnesota CF patients have received college scholarships because of their athletic successes in high school