The Big Squeeze

Some colleagues of mine brought this scary phenomenon to my attention last evening.

As insurance and Medicare reimbursement to doctors and hospitals fall (Medicare is enacting a series of substantial cuts, which will be followed by the private health insurers), you would expect the use of hospital procedures to drop. Makes sense, right? Less money paid per procedure, less incentive to do them.

Unfortunately, that's not how it's playing out in the real world. Your neighborhood interventional cardiologist or cardiothoracic surgeon is accustomed to a level of income and lifestyle. That lifestyle is now threatened by shrinking reimbursement. True to the Law of Unintended Consequences, rather than reducing use of procedures, diminishing procedural fees are prompting a good number of practitioners to do more.

In other words, if each heart catheterization pays less, why not do more of them, along with more stents, pacemakers, defibrillators, and the like? If four heart catheterizations per day pays less, why not do five to make up the difference?

Voila! Income protected. Of course, it comes at the cost of more work. But I will give one thing to my colleageus: They are a generally hard-working bunch who rarely balk at 12-16 hours days in the hospital.

How do you do more procedures? Easy. Just lower the bar on who to do a procedure on. Use more aggressive criteria for pacemaker implantation. Interpret the always-fuzzy nuclear stress tests weighed more towards abnormal. Use scare tactics: "You never know--that chest pain could be the last warning you're going to have!" Because the criteria for performing procedures is "soft" in the real world, it is easy to bend the criteria any way you want.

It's too early to measure the full impact of this unintended consequence of reduced reimbursement. But don't allow yourself to become a casualty in the reimbursement war. Remain vigilant. Recognize that, despite the fuzziness at the edges, there are still rational reasons for performing heart procedures. Always be armed with information and the right questions. Never submit unquestioningly or without satisfactory answers to your questions.

Tim Russert's heart scan score 210. . .in 1998

Despite the media blathering over how Mr. Russert's tragic death from heart attack could not have been predicted, it turns out that he had undergone a heart scan several years ago.

A New York Times article, A Search for Answers in Russert’s Death, reported:

Given the great strides that have been made in preventing and treating heart disease, what explains Tim Russert’s sudden death last week at 58 from a heart attack?

The answer, at least in part, is that although doctors knew that Mr. Russert, the longtime moderator of “Meet the Press” on NBC, had coronary artery disease and were treating him for it, they did not realize how severe the disease was because he did not have chest pain or other telltale symptoms that would have justified the kind of invasive tests needed to make a definitive diagnosis. In that sense, his case was sadly typical: more than 50 percent of all men who die of coronary heart disease have no previous symptoms, the American Heart Association says.

It is not clear whether Mr. Russert’s death could have been prevented. He was doing nearly all he could to lower his risk. He took blood pressure pills and a statin drug to control his cholesterol, he worked out every day on an exercise bike, and he was trying to lose weight, his doctors said on Monday. And still it was not enough.

“What is surprising,” Dr. Newman said, “is that the severity of the anatomical findings would not be predicted from his clinical situation, the absence of symptoms and his performing at a very high level of exercise.”


Buried deeper in this article, the fact that Mr. Russert had a heart scan score of 210 in 1998 is revealed.

That bit of information is damning. Readers of The Heart Scan Blog know that heart scan scores are expected to grow at a rate of 30% per year. This would put Mr. Russert's heart scan score at 2895 in 2008. But the two doctors providing care for Mr. Russert were advising the conventional treatments: prescribing cholesterol drugs, blood pressure medication, managing blood sugar, and doing periodic stress tests.

Conventional efforts usually slow the progression of heart scan scores to 14-24% per year. Let's assume the rate of increase was only 14% per year. That would put Mr. Russert's 2008 score at 779.

A simple calculation from known information in 1998 clearly, obviously, and inarguably predicted his death. Recall that heart scan scores of 1000 or greater are associated with annual--ANNUAL--risk for heart attack and death of 20-25% if no preventive action is taken. The meager prevention efforts taken by Mr. Russert's doctors did indeed reduce risk modestly, but it did not eliminate risk.

We know that growing plaque is active plaque. Active plaque means rupture-prone plaque. Rupture prone plaque means continuing risk for heart attack and death. Heart attack and death means the approach used in Mr. Russert was a miserable failure.

While the press blathers on about how heart disease is a tragedy, as Mr. Russert's doctors squirm under the fear of criticism, the answers have been right here all alone. It sometimes takes a reminder like Mr. Russert's tragic passing to remind us that tracking plaque is a enormously useful, potentially lifesaving approach to coronary heart disease.

Who needs to go next? Matt Lauer, Oprah, Jay Leno, some other media personality? Someone close to you? Can this all happen right beneath the nose of your doctor, even your cardiologist?

I don't need to remind readers of The Heart Scan Blog that heart disease is 1) measurable, 2) trackable, 3) predictable. Mr. Russert's future was clear as long ago as 1998. Every year that passed, his future became clearer and clearer, yet his doctors fumbled miserably.



Copyright 2008 William Davis, MD

Another failure of conventional cardiac care


Though Tim Russert was widely known and respected for his political commentary, he will likely be better remembered as an example of the gross shortcomings of the conventional approach to heart disease.

Let's face it:

Standard heart disease prevention efforts are a miserable failure.

A Track Your Plaque member brought this interview of Mr. Russert's doctor to my attention.

It appears that his doctor did all the correct conventional things. You know what became of it. In the eyes of the public and of any attorney, or even of my colleagues, no wrong was committed. The blame does not lie with Mr. Russert's hapless doctor. The blame lies on the system that endorses procedures, prescription medications, the blind adherence to dogma dictated by the pharmaceutical industry and FDA, along with a prevailing philosophy of preferring the management of catastrophes to preventing them. Dr. Newman's idea of a solution: Making an automatic defibrillator (AED) more widely available (!!!).

How long does this sort of idiocy have to go on? How many people have to die before the system uses the tools that are already available, tools that could have prevented this tragedy and many more like it?

If you and your doctor subscribe to the program that the unfortunate Mr. Russert was prescribed and the brainwashing, unthinking nonsense that his doctor follows, you are a fool. Shame on you. You therefore likely subscribe to the same variety of marketing BS that issues from food manufacturers about Cheerios, whole grains, and low-fat diets.

Get with the program. Sadly, Mr. Russert is not the first, he's not the last. The tragedies of conventional advice that line the pockets of drug and food manufacturers number in the millions. We're not talking about some obscure, rare disease. We're talking about the number one cause of death in both males and females nationwide.

I deeply wish this message could have reached Mr. Russert before his untimely death. We could all look forward to another Sunday morning with his usual incisive, unforgiving probing of the day's political figures.

Tribute to Tim Russert

The sudden passing of news giant, Tim Russert, yesterday of sudden cardiac death struck a blow to American consciousness.

Perhaps his hard-hitting interviewing style, while making guests squirm, made him seem invincible. But, of course, none of us is invincible. We are all vulnerable to this disease.

We should not allow Mr. Russert's tragic death to occur without taking some lessons. The media have already resorted to interviewing prominent doctors for their opinion.


Douglas Zipes, M.D., former President of the American College of Cardiology,was quoted in the media:

"An automated external defibrillator (AED) could have been a life-saver. AEDs should be as common as fire extinguishers."

This is typical sleight-of-hand, medicine-is-too-complex-for-the-public-to-understand sort of rhetoric that is surely to issue from the conventionally-thinking medical people and the press. Instead, let's cut the BS and learn the real lessons from Mr. Russert's needless death.

It is virtually certain that:

--Mr. Russert ruptured an existing coronary atherosclerotic plaque, prompting rhythm instability, or ventricular fibrillation.

--Making automatic external defibrillators (AED) available might have Band-Aided the ventricular fibrillation, but it would not have stopped the heart attack that triggered it.

--Though full details of Mr. Russert's health program have not been made available, it is quite likely that he was prescribed the usual half-witted and barely effective panoply of "prevention": aspirin, statin drug, anti-hypertensive medication. Readers of The Heart Scan Blog and members of Track Your Plaque know that this conventional approach is as effective as aspirin for a fractured hip.

--It is highly unlikely that all causes of Mr. Russert's heart disease had been identified--did he have small LDL (it's certain he did, given his body habitus of generous tummy), Lp(a), low HDL, pre-diabetic patterns, inflammatory abnormalities, vitamin D deficiency, etc.? You can be sure little or none of this had been addressed. Was he even taking simple fish oil that reduces the likelihood of sudden cardiac death by 45%?

--Far more could have been done to have prevented Mr. Russert's needless death. And I don't mean the idiocy of making AED's available in office buildings. I'm talking about preventing the rupture of atherosclerotic plaque in the first place.

Far more can be done to prevent future similar deaths among all of us.

Our jobs are to use the tragic death of Mr. Russert to help those around us learn that heart disease is identifiable and preventable. Though Mr. Russert did not stand for BS in his political commentary, he sadly probably received it in his health advice. Don't let this happen to you or those around you.

Why do skinny people get heart disease?

There's no doubt about it: The majority of people with heart disease are overweight. They may not be grotesquely overweight, just a few pounds over. But weight plays a crucial role in activating numerous factors that heighten risk for heart disease.

Excess weight reduces HDL cholesterol, raises triglycerides, increases small LDL (enormously), fans the fires of inflammatory responses (CRP, IL-6, TNF-alpha, etc.) raises blood pressure, increases resistance to insulin and raises blood sugar. Overweight people tend to be less physically active, may develop diseases of obesity like sleep apnea, and on and on. You've heard this all before.

But why do slender people develop heart disease? If we can't blame weight, what is to blame? By slender, I mean body mass index (BMI) of <25. (Yes, I know there are other ways, better ways, to gauge healthy weight. But, for simplicity, I'll use BMI.) Let's put aside the two obvious causes of heart disease, cigarette smoking and Type I diabetes. (I'd be shocked if any cigarette smokers read this blog.)

Slender people develop heart disease because:

1) They have lipoprotein(a)--The big, big neglected risk factor. In fact, the Lp(a) genotype is, in my casual observation, associated with a slender phenotype (genotypic expression). The prototypical example that makes headlines is the marathon runner--slender and superbly fit, but develops heart disease anyway. People wax on about the uncertainties of exercise and fitness when they hear about Jim Fixx and Alberto Salazar. But one factor would explain it all: Lp(a).

2) The murky category of the normal weight obesity. These people are generally recognizable by their flaccid tummies despite falling into a favorable BMI <25. Small LDL is the standout red flag in these people.

3) They were previously overweight but lost it.

4) They were former smokers.

5) Vitamin D deficiency--Deficiency of vitamin D is important for everyone's health. But there appears to be some people for whom it is the dominant risk. I believe that one of our great Track Your Plaque success stories, Neal, falls into this group. Some people who are vitamin D deficient develop colon cancer, others develop diabetes, others develop osteoporosis or multiple sclerosis, while others develop coronary heart disease and plaque. The likely reason for the varied expression is variation in vitamin D receptor genotypes (VDR genotypes).

6) The murkiest of all: Hypertension genotypic variants. This is a poorly sorted-out category, and one principally based on my observations along with scattered observations in such things as variations in the angiotensin converting enzyme genotypes. But I am convinced that there is a small percentage of slender people who show variation in some genetic type that predisposes to hypertension and heart disease. They also show a propensity towards enlargement of the thoracic aorta. This group is also among the most difficult to control in the Track Your Plaque approach, i.e., they have difficulty slowing or stopping the growth of heart scan scores. While blood pressure control in this group is important, it does not seem to remove the excess source of risk.

So, yes, being slender does put you into a lower risk for heart disease category. But it does not mean you are immune.

You can also be an overweight person who still harbors some of the features of the slender--you're an overweight slender person. The above list can still therefore apply.

Cardiology Confidential


Okay, so it's a shameless knockoff of chef Anthony Bourdain's titillating Kitchen Confidential.

But the confidences that I've heard whispered in the corridors of health involve something more provocative than how your food was prepared. Any service for humans performed by other humans is subject to the idiosyncrasies and weaknesses of human behavior. That's just life.

In healthcare for your heart, the consequences can be more profound than eating three day old fish on Monday's dinner menu.

Over my 15 years practicing cardiology in a variety of settings in three different cities, I've witnessed just about everything from shocking to sublime. Some of it speaks to the extraordinary commitment of people in healthcare, the unexpected courage people show in the midst of illness, the devotion of family in difficult times. It can also speak of mewling, sobbing carryings-on over the most minor conditions, the meanness that emerges when people are frightened, the vultures circling just waiting for Grandpa to kick the bucket and leave his will declaring the spoils.

For the most part, my cardiology colleagues are a hard-working bunch committed to . . . Uh oh. I was going to say "Saving lives, preserving health." But that's not true. Once upon a time, it was true for many of my colleagues, often revealed over $2-a-pitcher beer-softened, "we're going to save people" conversations in medical school. Ahhh, medical school. I remember walking along the street alongside my medical school in St. Louis, bursting with pride and a sense of purpose.

But, for many of us, something sours our purpose through the years. Maybe it's the smell of money, maybe it's the series of distasteful experiences that show that healthcare providers are, in the midst of health crises, the innocent recipients of anger, frustration, disappointment.

Whatever the genesis, the stage is set for an imperfect scenario that pits healthcare provider against patient in a less-than-perfect system.

This would read as a mindless rant if it wasn't based on such pervasive and pravalent truths, tales of the flawed deliverers of healthcare driven by motives less lofty than "saving people."

Take Dr. S, a doctor who performs a large number of procedures on patients. I'm told he is very capable. He manages an extraordinary amount of heart work--in between jail time for wife beating and Medicare fraud.

Or Dr. C, well-known in the region for his procedural talents, also. Usually acerbic and freely-swearing, he opens up engagingly when drinking--which is most of the time. Paradoxically, as is true for some serious drinkers, he works more effectively while intoxicated.

Or Dr. ST, who proudly admitted to me one evening over dinner that he has accepted 6-figure payments from medical device companies on a number of occasions to use their products.

Or the manic ups and downs of Dr. J, who refers just about every patient he sees for emergency bypass surgery when in his down phase, mangles coronary arteries in daring angioplasties during his up phase.

How about 310-lb Dr. P, who hounds her patients about indulgent lifestyles? That would be excusable as innocent lack of self-insight if it weren't for her propensity to use heart procedures on patients as punishment. "I have no choice but to take you to the hospital."

Dr. M. manages to maintain the appearance of straight-and-narrow during the day, all the way to attending church twice a week with his children. His daytime persona effectively covers up his frequent visits to prostitutes.


We are ALL flawed. My colleagues are no different. But some circumstances cultivate the flaws, fertilize corruptibility, reward it. Such has become the state of affairs in healthcare for heart disease. Why? Is it the excessive potential for money-making that existed until recently? Is there something about the save-the-day mentality of heart disease that attracts imperfect personalities looking for the adrenaline-charged thrill but morphs over time into near-psychopathic lives?

It's not the end of the world. The fact that my colleagues' behavior has reached such extravagant lows signals a bottom: things are about to change.

In the meantime, let me tell you a few more secrets . . .



Copyright 2008 William Davis, MD

Fanatic Cook on the American Heart Association

The Fanatic Cook has posted a stinging criticism of the American Heart Association (AHA):

American Heart Association My Fat Translator

Beyond the nonsensical nutritional recommendations (e.g., substitute small French fries for large French fries), she lists the major financial contributors to the AHA, a Who's Who in the pharmaceutical and processed food industry.


"For an organization that brought in close to a billion dollars last year, you'd think they could come up with something a little more pronounced. If I was more cynical I'd say the AHA had an interest in keeping Americans fat . . . or at least dependent on a highly-processed, fast food diet, requiring drugs to tweak lab values."

To be sure, the AHA does a great deal of good in funding research and educating the public about the prevalence of heart and vascular disease. But their fund raising interests have clearly subverted the honesty of their nutritional advice. Sadly, it is the AHA dietary advice that hospital dietitians use in counseling people with heart disease after their heart attack, stent, or bypass surgery. After my patients are discharged from the hospital for any reason, I tell them to please forget everything the nice hospital dietitian told them. It is not okay to eat the factory farm-raised hamburger on the sugar-equivalent enriched flour bun. Low-fat ice cream is not a healthy substitute for full-fat ice cream.

The AHA is no different than the USDA and the American Diabetes Association, "official" organizations that have, in effect, sold out to industry.

Sleep for heart health

Sleep is a fascinating phenomenon.

Virtually all animals, certainly all mammals, sleep. While the form and shape of sleep can vary, sleeping is a universal phenomenon. Even fish sleep, though their eyes remain open.

Sleep disorders like sleep apnea ("apnea" = without breathing) are growing in prevalence nationwide as the country gets fatter and fatter. Our throats assume a smaller diameter, even our tongues get obese. This results in intermittent obstruction to the airway during sleep, causing snoring. It also results in sleep interruption, particularly during attempts to "descend" down to the deepest phases of sleep. Dire health and cardiac consequences can sometimes emerge, such as high blood pressure, higher blood sugar, abnormal heart rhythms, impaired heart muscle function, even sudden death.

We are all familiar with the perceptible effects of sleep deprivation: edginess, crabbiness, diminished attention span, slowed reaction time. I'm not talking about sleep apnea or sleep disorders, but just simple duration of sleep. Data are emerging that both sleep deprivation and sleep excess may trigger undesirable changes in lipids (cholesterol values):



Associations of usual sleep duration with serum lipid and lipoprotein levels.

Kaneita Y, Uchiyama M et al.

STUDY OBJECTIVES: We examined the individual association between sleep duration and a high serum triglyceride, low HDL cholesterol, or high LDL cholesterol level. DESIGN AND SETTING: The present study analyzed data from the National Health and Nutrition Survey that was conducted in November 2003 by the Japanese Ministry of Health, Labour and Welfare. This survey was conducted on residents in the districts selected randomly from all over Japan. PARTICIPANTS: The subjects included in the statistical analysis were 1,666 men and 2,329 women aged 20 years or older. INTERVENTION: N/A. MEASUREMENTS AND RESULTS: Among women, both short and long sleep durations are associated with a high serum triglyceride level or a low HDL cholesterol level. Compared with women sleeping 6 to 7 h, the relative risk of a high triglyceride level among women sleeping <5 h was 1.51 (95% CI, 0.96-2.35), and among women sleeping > or =8 h was 1.45 (95% CI, 1.00-2.11); the relative risk of a low HDL cholesterol level among women sleeping <5 h was 5.85 (95% CI, 2.29-14.94), and among women sleeping > or =8 h was 4.27 (95% CI, 1.88-9.72). On the other hand, it was observed that the risk of a high LDL cholesterol level was lower among men sleeping > or =8 h. These analyses were adjusted for the following items: age, blood pressure, body mass index, plasma glucose level, smoking habit, alcohol consumption, dietary habits, psychological stress, and taking cholesterol-lowering medications. CONCLUSIONS: Usual sleep duration is closely associated with serum lipid and lipoprotein levels.

Triglycerides go up with too little or too much sleep. Note especially the extraordinary association of low HDL cholesterol with sleeping <5 hours (nearly 6-fold increased risk) or sleeping >8 hours (more than 4-fold increased risk).

Why do these effects develop? Does sleep deprivation, for instance, trigger higher adrenaline levels, encourage carbohydrate cravings or binges, make us less likely to engage in physical activity? Cortisol is elevated; could this be a factor? I know that I am a different person when sleep-deprived: irritable, less clear-thinking, quicker to anger, more critical, and I develop carbohydrate cravings. It's curious that triglycerides increase when sleep excess is present; what might that represent?

Anyway, the data are growing: Sleep is an important facet of health, both for maintaining a bright outlook and to discourage development of low HDL and high triglycerides. Though not specifically examined in this study, we know that low HDL/high triglycerides are, as a rule, associated with the undesirable small LDL particle pattern.

As a practical matter, you may also find sleep and waking from sleep more satisfying and restful if you sleep in increments of 90 minutes, e.g., 7 1/2 hours (rather than 7 or 8 hours). This is because the full cycle of sleep, from phase 1 to REM (rapid-eye movement sleep), requires 90 minutes for completion. That doped feeling that sometimes develops when awaking will disappear if you sleep according to your sleep cycle, which is usually 90 minutes long.

Is normal TSH too high?

There's no doubt that low thyroid function results in fatigue, weight gain, hair loss, along with rises in LDL cholesterol and other fractions of lipids. It can also result in increasing Lp(a), diabetes, and accelerated heart disease, even heart failure.

But how do we distinguish "normal" thryoid function from "low" thyroid function? This has proven a surprisingly knotty question that has generated a great deal of controversy.

Thyroid stimulating hormone, or TSH, is now the most commonly used index of the adequacy of thyroid gland function, having replaced a number of older measures. TSH is a pituitary gland hormone that goes up when the pituitary senses insufficient thyroid hormone, and a compensatory increase of thyroid hormone is triggered; if the pituitary senses adequate or excessive thyroid hormone, it is triggered to decrease release of TSH. Thus, TSH participates in a so-called "negative feedback loop:" If the thyroid is active, pituitary TSH is suppressed; if thyroid activity is low, pituitary TSH increases.

An active source of debate over the past 10 years has been what a normal TSH level is. In clinical practice, a TSH in the range of 0.4-5.0 mIU/L is considered normal. (Lower TSH is hyperthyroidism, or overactive thyroid; high TSH is hypothyroidism, or underactive thyroid.)

The data from a very fascinating and substantial observation called the HUNT Study, however, is likely to change these commonly-held thyroid "rules."

The association between TSH within the reference range and serum lipid concentrations in a population-based study. The HUNT Study

In this study, over 30,000 Norwegians without known thyroid disease were enrolled. TSH levels and lipid (cholesterol) levels were measured.

In this large and extraordinary observation, increasing TSH levels were associated with increasing levels of LDL cholesterol and triglycerides, and decreasing HDL. At what level of TSH did this relationship start? At TSH levels as low as 1.0!

In other words, there were perturbations in standard lipid measures even with TSH levels ordinarily regarded as "normal," even "perfect."

A subsequent observation from the HUNT Study was even more recently published:

Thyrotropin Levels and Risk of Fatal Coronary Heart Disease: The HUNT Study

Abstract:

Background Recent studies suggest that relatively low thyroid function within the clinical reference range is positively associated with risk factors for coronary heart disease (CHD), but the association with CHD mortality is not resolved.

Methods In a Norwegian population-based cohort study, we prospectively studied the association between thyrotropin levels and fatal CHD in 17 311 women and 8002 men without known thyroid or cardiovascular disease or diabetes mellitus at baseline.

Results During median follow-up of 8.3 years, 228 women and 182 men died of CHD. Of these, 192 women and 164 men had thyrotropin levels within the clinical reference range of 0.50 to 3.5 mIU/L. Overall, thyrotropin levels within the reference range were positively associated with CHD mortality (P for trend = .01); the trend was statistically significant in women (P for trend = .005) but not in men. Compared with women in the lower part of the reference range (thyrotropin level, 0.50-1.4 mIU/L), the hazard ratios for coronary death were 1.41 (95% confidence interval [CI], 1.02-1.96) and 1.69 (95% CI, 1.14-2.52) for women in the intermediate (thyrotropin level, 1.5-2.4 mIU/L) and higher (thyrotropin level, 2.5-3.5 mIU/L) categories, respectively.

Conclusions Thyrotropin levels within the reference range were positively and linearly associated with CHD mortality in women. The results indicate that relatively low but clinically normal thyroid function may increase the risk of fatal CHD.


In other words, the findings of this substantial observation suggest that the ranges of TSH usually regarded as normal contribute to coronary events, cardiac death, as well as lipid patterns. While several other studies have likewise shown a relationship of higher TSH/lower thyroid function with lipid abnormalities and overt heart disease, no previous study has plumbed the depth of TSH to this low level and to such a large scale.

I believe that these findings are enough cause to begin thinking seriously about monitoring thyroid function more seriously to uncover "borderline" TSH increases in the "normal" range. While higher TSH levels predict cardiovascular events, does thyroid replacement at these levels reduce it? Critics will say it's a big leap, but I think that it is worth at least considering.

Stay tuned for a lengthy Special Report followed by a full booklet on these issues on the www.cureality.com website.


Copyright 2008 Wiliam Davis, MD

Talking heads

Tne Philadelphia NBC affiliate's website carried this commentary from a colleague of mine:


Mark from the Lehigh Valley is curious about scans that can detect heart disease.

He asked, "I am in my early 50s. My father had a heart attack in his 40s. I am healthy with no symptoms of heart disease, should I consider a heart scan?"

"Well, Mark, occasionally family history needs to be considered more closely. If your father had coronary disease at a relatively young age at the absence of any known risk factor for heart disease for example diabetes, smoking, obesity, high blood pressure, than your level of risk should be considered more closely," Dr. Kevin Shinal, a cardiologist, said.

"There are a number of studies available to access [sic] your level of risk. One such study is a calcium score. A calcium score is a form of a CAT scan that access [sic] the calcium burden or presence of calcium in your coronary arteries. It assigns you a score and score is translated into a level of cardiovascular risk," Shinal said.

But the doctor warned because Mark doesn't have active symptoms, the scan probably wouldn't be covered by insurance.



Was there an understandable answer in there? I certainly couldn't find it.

Why pick on some yokel responding inarticulately to the local media's quest for content? Because this is, all too often, what the public hears: Ill-informed blather from someone who has little or no understanding of the issues. Maybe this doctor wanted his practice group to get some free publicity. "Doctor, could you just answer a few questions from viewers?"

Unfortunately, it's not just local media who are guilty of consulting with know-nothings with only passing knowledge of an issue. National media are guilty of it, too. The need to fill airtime with content is better filled with talking heads who present a compelling story, whether or not it is accurate or insightful, rather than an expert with deep insight into a topic who might not present as pretty a story. I've seen this countless times. A good portion of my day, in fact, is occupied responding to patient questions based on the misinformation presented in some media report.

My message of this brief rant: Be very careful of the messages delivered by the media, even if provided by some supposed "expert." In fact, I regard "experts" in health about as believable as politicians. Sure, sometimes they provide accurate information. But they often do not, or provide information with limited understanding. Or, worse, information intended to serve some hidden agenda.

Were the media to ask me to respond to the question, however, I would say:

"Yes, you should absolutely have a heart scan--yesterday! With your family history, there is no other way to accurately, easily, and inexpensively quantify the amount of coronary atherosclerosis in your heart's arteries. A stress test only uncovers advanced disease. A heart catheterization is overkill and absolutely not indicated in an asymptomatic man. Judging the presence of heart disease from cholesterol values is folly.

"What's left? A CT heart scan. So, yes, you need a CT heart scan ASAP with no doubt whatsoever."

But they didn't ask.
All posts by william-davis

What's for breakfast?

Breakfast, for some reason, seems to be the toughest meal of the day for many people.

I think it's because the quest for sweet has dominated the American breakfast for so long, with its half-century legacy of cartoon character-festooned breakfast cereals; baked flour products like pancakes, waffles, and English muffins; more recently, "healthy" alternatives like bran muffins and oat waffles.

This breakfast lifestyle has also contributed to the obesity and diabetes ("diabesity") epidemic. Breakfasts of wheat- or corn-based cereals, even those labeled "heart healthy," fruit, and whole grain breads are guaranteed paths to low HDL cholesterol, high triglycerides, flagrant small LDL, increased inflammatory responses, high blood pressure, and higher blood sugar. Such foods also make you tired, make your abdominal fat grow (wheat belly), and increase appetite so that you want more.

So what can you eat for breakfast that doesn't provoke these patterns?

I will never pretend to be terribly clever in creating meal menus, but I can tell you what has worked for me and many of my patients. Be warned: It may require you to suspend your previous notions of what "should" be included in a list of breakfast foods.

Here are some examples that you may find helpful:

--Raw nuts--one or several handfuls of raw almonds, walnuts, pecans, pistachios
--Cheeses--the real, traditional sorts like gouda, goat, Swiss, edam, etc. (not Velveeta, Cheez Whiz, etc.)
--Eggs, Egg Beaters--and "spice" them up with sun-dried tomatoes, salsa, olives, tapenades, olive oil, onions, green peppers, etc.
--Yogurt (real, of course), cottage cheese
--Ground flaxseed, oat bran--as hot cereals or added to yogurt, cottage, or other foods. Esp. helpful for reducing both total LDL and the proportion of small LDL.
--Oatmeal--slow-cooked, not the instant nonsense.
--Soups--great for winter.
--Dinner foods--chicken, beef, fish, green beans, asparagus, tomatoes, etc., most easily added by saving left-overs from dinner. You'll be surprised how filling dinner foods eaten at breakfast can be.

It's really not that tough. It just means selecting from an entirely different list of foods than you might be accustomed to.


Copyright 2008 William Davis, MD

The first lawsuit?


The closing arguments in actor John Ritter's wrongful death lawsuit are over and the two doctors charged with negligence cleared, five years after his death from a dissection (tear of the inner lining) of the thoracic aorta. The family sought $67 million in damages, claiming that the aortic dissection was misdiagnosed as a heart attack and that the enlarged aorta should have been reported to Mr. Ritter two years earlier during a full body scan.

The AP story can be viewed at http://ap.google.com/article/ALeqM5gmv6HnJJPBee2gWgEYResT5m6YkAD8VDF9CO0


Well, perhaps this is the start of a trend. Up until now, it has been commonplace for doctors to ignore many of the important findings on heart scans, full body scans, and similar direct-to-the-public imaging services. For instance, similar to John Ritter's case, enlarged thoracic aortas are commonly ignored. I'd even say that as a rule they are ignored. I have seen many patients in consultation who have had large aortas identified on heart scans, yet nothing--not a thing--was done about it. While the doctors escaped a lawsuit this time, it might not happen a second time.

I truly hope that Mr. Ritter's unfortunate experience and the consequent lawsuit do not trigger the usual defensive medicine response of resorting to major procedural "solutions."

A better response would be to 1) identify the problem--enlarged aorta in this case, 2) identify the causes, then 3) correct the causes. It does not necessarily mean that a major procedure like replacing the aorta (a horrendous surgery, by the way) needs to be pursued each and every time.

It is possible that Mr. Ritter's lawsuit is just the first. Over the next several years, it could trigger an avalanche of lawsuits for all the neglected findings on tests like heart scans, body scans, and other imaging methods that are gaining expanded direct-to-consumer access.


Images courtesy Wikipedia.

The origins of heart catheterization: Part II

On the afternoon of October 30th, 1958, nearly 30 years after Werner Forssmann’s fumbling attempts, Dr. Mason Sones, a 5 foot 5 inch, plain-talking, cuss-every-few-words, cigarette-wielding radiologist at the Cleveland Clinic, was performing a routine angiogram of a patient’s aorta (the large vessel emerging from the heart) in a dark basement laboratory. (In Sones’ day, imaging methods remained primitive, disease diagnosis relying more than anything else on the physician’s powers of observation and crude diagnostic procedures. Abdominal pain was assessed with exploratory laparotomy, headaches with air injected into the brain and nervous system (“pneumoencephalography”), an excruciatingly painful ordeal. Being able to track the course of x-ray dye injected into specific internal organs, whether liver, biliary tree, aorta, lungs, or coronary arteries, represented a huge advance in diagnostic tools for human disease.)

In 1958, no one had yet injected dye directly into the coronary artery of a living human.


Just as the dye injector was triggered, Dr. Sones’ eyes widened in horror when the black and white monitor showed that the catheter had inadvertently jumped into the right coronary artery. The injection pump, already triggered to release its load, proceeded to pump 30 cc of X-ray dye straight into the artery. (Modern techniques usually require only 5–10 cc of dye.) Dr. Sones recounts the incident:

“It was late in the day and we were tired. I hit the switch to rev up the x-ray generator so I could see. As the picture came on, I could see that the damn catheter was in the guy’s right coronary artery. And there I was, down in the hole [a recess to shield him from radiation]. I yelled, “Pull it out! Pull it out!”*? By that time, about 30 cc of the dye had gone into the coronary artery. I climbed out of the hole and I grabbed a knife. I thought that his heart would fibrillate and I would have to open his chest and shock his heart. [In Sones’ day, modern CPR hadn’t yet been developed as a method of resuscitation.] But he didn’t fibrillate—his heart stopped. I demanded he cough. He coughed three times and his heart began to beat again. I knew at once that if the heart could tolerate 30 cc of dye, we would be able to safely inject small amounts directly into the coronary artery. I knew that night that we would have a tool to define the anatomic nature of coronary disease.”


*An observer, Dr. Julio Sosa, reported that Dr. Sones, in his shock, also blurted, “We’ve killed him!” After all, conventional wisdom of that era, based on observations from dye injections into the coronary arteries of dogs, was that injecting x-ray dye into human coronary arteries would result in immediate death from the electrical imbalance provoked in heart muscle momentarily deprived of oxygen-carrying blood.

Thus it was established that it was indeed possible to directly inject x-ray dye into human coronary arteries and reveal its internal contours. That’s not to say that the x-ray dyes of 1958 were innocuous. Far from it. In addition to briefly interrupting heart rhythm, as happened with Sones’ first accidental attempt, the dyes used then typically caused dizziness and the sudden urge to vomit. During the first 30 years of direct coronary catheterizations, it was common for hospital staff to run to the patient’s side, bucket in hand to catch the inevitable vomit, once the heart was jump-started by coughing.

Not surprisingly, Dr. Sones’ discovery set off both an avalanche of criticism and bold predictions of how the new technique might change the course of diagnosis in heart disease.

Over the subsequent weeks and months, Dr. Sones proceeded to purposefully insert catheters into coronary arteries and create angiograms that revealed the extent of coronary atherosclerosis. He learned how to fashion new catheter shapes to facilitate access to the arteries. Sones developed an impressive experience in the new technique. For the first time, clear images of the coronary arteries were routinely obtainable for the confident diagnosis of coronary atherosclerosis before death. Dr. Sones became an unlikely celebrity in Cleveland, entertaining physicians from around the world eager to learn about his methods, politicians and celebrities, even Middle Eastern nobility complete with bodyguards and food testers.

Dr. Sones continued to work in Cleveland, furthering the techniques of heart catheterization after his fortuitous error. He died of lung cancer in 1985, 17 years after his discovery.

Thus was born the modern age of heart catheterization.

Today, over 10,000 heart procedures are performed in the U.S. every day, 365 days a year, the vast majority of which involve heart catheterization or begin with a heart catheterization. Dr. Sones' fortuitous blunder was followed by 30 years of productive refinement and development before the blatant excesses of this technique really began to be exploited.


Copyright 2008 William Davis, MD

The origins of heart catheterization: Part I

The modern era of heart disease care was born from an accident, quirky personalities, and even a little daring.

The notion of heart catheterization to visualize the human heart began rather ignominiously in 1929 at the Auguste-Viktoria Hospital in Eberswalde, Germany, a technological backwater of the day. Inspired by descriptions of a French physician who inserted a tube into the jugular vein of a horse and felt transmitted heart impulses outside the body, Dr. Werner Forssmann, an eager 25-year old physician-in-training, was intent on proving that access to the human heart could be safely gained through a surface blood vessel. No one knew if passing a catheter into the human heart would be safe, or whether it would become tangled in the heart’s chambers and cause it to stop beating. On voicing his intentions, Forssmann was ordered by superiors not to proceed. But he was determined to settle the question, especially since his ambitions captured the interest of nurse Gerda Ditzen, who willingly even offered to become the first human subject of his little experiment.

Secretly gathering the necessary supplies, he made his first attempt in private. After applying a local anesthetic, he used a scalpel to make an incision in his left elbow. He then inserted a hollow tube, a catheter intended for the bladder, into the vein exposed under the skin. After passing the catheter 14 inches into his arm, however, he experienced cold feet and pulled it out.

One week later, Forssman regained his resolve and repeated the process. Nurse Ditzen begged to be the subject, but Forssmann, in order to allow himself to be the first subject, tricked her into being strapped down and proceeded to work on himself while she helplessly watched. After stanching the oozing blood from the wound, he threaded the catheter slowly and painfully into the cephalic vein, up through the bicep, past the shoulder and subclavian vein, then down towards the heart. He knew that simply nudging the rubber catheter forward would be sufficient to direct it to the heart, since all veins of the body lead there. With the catheter buried 25 inches into his body, Forssmann untied the fuming Ditzen. Both then ran to the hospital’s basement x-ray department and injected x-ray dye into the catheter, yielding an image of the right side of his heart, the first made in a living human.



Thus, the very first catheterization of the heart was performed.



An x-ray image was made to document the accomplishment. Upon hearing of the experiment, Forssmann was promptly fired by superiors for his brazen act of self-experimentation. Deflated, Forssmann abandoned his experimentation and went on to practice urology. He became a member of the Nazi party in World War II Germany and served in the German army. Though condemned as crazy by some, physicians in Europe and the U.S., after hearing of his experience, furthered the effort and continued to explore the potential of the technique. Forssmann himself was never invited to speak of his experiences outside of Germany, as he had been labeled a Nazi.

Many years after his furtive experiments, the once intrepid Dr. Forssmann was living a quiet life practicing small town medicine. He received an unexpected phone call informing him that he was one of three physicians chosen to receive the 1956 Nobel Prize for Medicine for his pioneering work performing the world’s first heart catheterization, along with Drs. André Cournand and Dickinson W. Richards, both of whom had furthered Forssmann’s early work. Forssmann remarked to a reporter that he felt like a village pastor who was made a cardinal.

Strange, but true.


Copyright 2008 William Davis, MD

Conventional therapy vs. alternative therapy

Rose is a 75-year old woman, mother of four, grandmother of many more.

Rose's story started after a heart attack 18 months ago that resulted in two stents. She was advised to follow an American Heart Association diet and take Lipitor. However, some months later, after her fourth stent, she became disilluioned in the conventional approach to heart disease and sought alternative therapies to help reduce or reverse her heart disease.

She found an alternative health practitioner who advised chelation, antioxidant vitamins for "excessive oxidation," and several homeopathic preparations.

Nothing was said about diet or exercise. Nothing was said about the baked flour products and pastries that occupied at least two meals every day. Nothing was said about the candies she indulged in several times per day, nor the soft drinks. Nothing was said about the wildly fluctuating blood sugars, poorly controlled by an oral diabetes agent. Thirty pounds of weight gain over the past 5 years with no exercise or physical activity? No comment here, too.

In short, Rose was the "graduate" of the conventional approach, as typically offered nationwide thousands of times a week. She was also the recipient of the insight of at least one alternative health practitioner, eager to reject conventional notions of how to achieve heart health.

So I then met her. She was experiencing chest pains every day, several times per day. Blood pressure over 200. At 5 ft, 3 inches, weight: 186 lbs.

Initial laboratory results:

HDL cholesterol 42 mg/dl
LDL 132 mg/dl
Triglycerides 263 mg/dl
Blood sugar 173 mg/dl


You can fill in the rest. In short, Rose was a disaster. Despite the attentions of several professionals from both the conventional as well as alternative camps, she was careening rapidly towards failure. She'd been given various crutches, Band-Aids, and salves, none of which resulted in any possibility of long-term relief from her aggressive disease.

My point: As I've said previously, all we want is truth. We want effective, rational approaches that yield real benefit. A stent? All that provides is temporary restoration of blood flow. Statin agents? They do indeed reduce LDL cholesterol. But what if Rose has 8, 9, or 10 other causes of heart disease unaffected by the statin drug? It will do little or nothing.

Nobody had addressed many of the root causes of Rose's disease: insulin resistance, high triglycerides, inactivity, obesity, hypertension (and identifying the reasons why her blood pressure was so high), vitamin D deficiency (virtually guarantted to be severe), junk foods including the ones known as "whole grains."

My message: Success in heart disease, as well as all aspects of health for that matter, doesn't necessarily have to come from an "alternative" approach, nor a "conventional" approach. It comes from applying what is truly effective, regardless of what label someone applied to it.

I would no sooner trust my health and life to an alternative health practitioner hawking unusual herbs and remedies than I would submit to a heart catheterization, three stents, followed by a statin drug. There's small benefit in both approaches, but none are the best. You've got to look elsewhere for that.


Copyright 2008 William Davis, MD

The JELIS Trial

The Japan eicosapentaenoic acid (EPA) Lipid Intervention Study (JELIS) is a clinical trial that all Track Your Plaquers should know about.

This enormous trial followed a simple design:

Japanese men, between 40-75 years, and Japanese postmenopausal women aged <75 years with total cholesterol 250 mg/dl or greater were enrolled. A total of 18,645 subjects (mean age, 61 years; 31% male) participated: 36% had hypertension, 15% had diabetes, and 20% had coronary disease (history of heart attack or heart procedure). Average starting total cholesterol 275 mg/dl; LDL 180 mg/dl. All participants were treated with pravastatin 10 mg/day or simvastatin 5 mg/day; approximately half also received the omega-3, EPA, 1800 mg/day, in addition to one of the statin drugs.

Treatment resulted in an average LDL reduction of 26% in all participants; the group taking EPA experienced an additional 10% reduction in triglycerides. All major cardiovascular events were tracked and tabulated, including sudden cardiac death, fatal or nonfatal myocardial infarction (MI), unstable angina pectoris, coronary artery bypass surgery, and coronary angioplasty.

After nearly five years, 3.5% of statin-only participants experienced an event; 2.8% of statin + EPA experienced an event. The (often misleading and frequently abused value) "relative reduction" was therefore 19%.

There are several features that make the JELIS trial interesting:

--There were an unusually low number of cardiovascular events in the entire group, lower than nearly all American and European trials of similar design. This likely points to the greater burden of atherosclerotic heart disease in the U.S. compared to Japan. Rates in comparable U.S.-based trials usually range from 6-14%, sometimes more.

--Both the participants without identified heart disease at enrollment and those with heart disease at enrollment obtained a similar magnitude of beneficial reduction in cardiovascular events.

--There was an unusual preponderance of women--69%--unlike most other trials of cardiovascular events. We might therefore argue that JELIS most conclusively showed that benefits of EPA are most confidently demonstrated for females.

--A fish oil preparation containing only EPA was used, rather than the usual EPA + DHA. There are discussions from some corners that argue that DHA is more important than EPA, e.g., algae sources. However, JELIS would argue that EPA does play a role. Is EPA with DHA better, worse, or no different? Unfortunately, there are insufficient data--large, randomized data like JELIS--to help us. Recall that GISSI Prevenzione used a combination of EPA and DHA, as have virtually all other trials examining the effects of fish oil. Also, keep in mind that the epidemiologic observations of the cardiovascular benefits of eating fish suggest that the naturally-sourced omega-3s--a combination of EPA and DHA--are associated with benefit.

--It's surprising that any difference at all was demonstrated, given the high intake of fish in the Japanese. In fact, blood levels of EPA in participants before taking EPA was five-fold higher than in western populations.


One potential difficulty: The study was funded by the manufacturer of the EPA preparation used, Mochida Pharmaceutical Company. We all know what that can do to results.

Nonetheless, the JELIS trial is a study that adds to the emerging wisdom in fish oil.


Copyright 2008 William Davis, MD

Omega-3 MUST be from fish oil

Despite my rants in this blog and elsewhere, at least once a day I'll have a patient say, "I cut back (or eliminated) my fish oil because I get my omega-3s from _______ (insert your choice of flaxseed oil, walnuts, yogurt, mayonnaise, bread, etc.)."

(See prior Heart Scan Blog post: Everything has omega-3.)

When I point out to them that the "omega-3s" in these products are not the same as the EPA and DHA from fish oil, they invariably declare, "But it says so here on the label: 'Contains 200 mg of omega-3 fatty acids'!"

Apparently, some of my colleagues have even endorsed this concept of replacing the omega-3s from fish oil with these "alternatives."

It's simply not true. The linolenic acid that is being labeled as omega-3, while it may indeed provide health benefits of its own, cannot replace the EPA and DHA that fish oil provides.

The most graphic example of the differences between the two classes of oils is in people with a condition called familial hypertriglyceridemia. People with this condition have triglyceride levels of 400, 600, even thousands of mg/dl--very high. Fish oil, usually providing EPA and DHA doses of 1800 mg per day and higher, reduce triglycerides dramatically. A person with a starting triglyceride level of, say, 900 mg/dl, may take 2400 mg of EPA and DHA from fish oil and triglycerides plummet to 150 mg/dl. This person then decides to replace fish oil with a linolenic acid source like flaxseed oil. Triglycerides? 900 mg/dl--no effect whatsoever.

Familial hypertriglyceridemia represents an exagerrated example of the differences between the two oils. Even if you don't have this genetic condition, the differences between the oils still apply.

EPA and DHA are activators of the enzyme, lipoprotein lipase, that accelerates clearance of triglycerides from the blood. Linolenic acid from flaxseed oil, walnuts, and other food sources does not. EPA and DHA block after-eating (post-prandial) accumulation of food by-products that can contribute to coronary and carotid plaque. Linolenic acid does not. EPA and DHA block platelets, reduce fibrinogen, and exert other healthy blood clot-inhibiting effects. Linolenic does not.

The 11,000-participant GISSI-Prevenzione Trial that showed 28% reduction in heart attack, 45% reduction in cardiovascular death with omega-3s used . . . fish oil.

The 18,000 participant JELIS trial that showed 19% reduction in cardiovascular events when omega-3s were added to statin therapy used . . . fish oil. (Actually, in JELIS, they used only EPA wtihout DHA.)

Linolenic acid is not a waste, however. It may exert anti-inflammatory benefits of its own, for instance. But it exerts none of the triglyceride-modifying effects of EPA or DHA.

EPA and DHA from fish oil and linolenic acid from foods each provide benefits in their own way. Ideally, you include both forms of oils--fish oil and linolenic acid sources--in your daily diet and obtain full benefit from each separate class. But they are not interchangeable.


Copyright 2008 William Davis, MD

Osteoporosis and coronary calcium

Several studies over the years have demonstrated a curious paradox:

People with more osteoporosis (thin bones) tend to be more likely to have coronary disease (heart attacks). They also tend to have higher heart scan scores (more coronary calcification as an index of atherosclerotic plaque).

People with more coronary disease and higher heart scan scores tend to have more osteoporosis.



In other words, regardless of which way you tackle the question--osteoporosis first or heart disease first--it leads to the same conclusion: Both conditions are somehow related.

I realize I harp an awful lot on this whole vitamin D issue. But, even after correcting the vitamin D blood levels of many hundreds of people, I remain enthusiastic as ever about the untapped potential of this fascinating factor.

So I couldn't resist showing this amazing comparison of how the long-term effect can be quite graphic.

The first scan is from a 46-year old man and shows normal coronary arteries without calcium and normal density of the vertebra (a common and reliable place to measure bone density).

























The second image is from a 79-year old man with both severe coronary calcification (and therefore severe coronary disease) and severe osteoporosis.
























It makes you wonder if the disordered metabolism of calcium through vitamin D deficiency allows transport of calcium away from bone and into coronaries. This has, however, been shown to not be the case. Instead, they are separate processes, each under local control, but sharing a common pathophysiology (causative factors).

An intriguing question: Would the 79-year old still look like the 46-year old had he begun increasing his vitamin D intake at, say, age 30?

About comment responses and moderation

Just a brief word about my responses to reader comments:

I appreciate the many often insightful and interesting reader comments I receive to the Heart Scan Blog. However, managing them and responding to them has simply become impossible, due to time demands.

I'm afraid that I am unable to answer questions seeking medical advice; this is for your doctor, who knows you and can diagnose and prescribe. I cannot.

I'm also unable to engage in lengthy debates; I've had commenters become very angry when I was unable to engage in lengthy conversations on some topic. Nor am I able to do Google or literature searches for commenters, or review studies, papers, or other materials.

I would urge any readers who wish to engage in in-depth discussions about these issues, talk about lipoproteins, heart disease reversal, etc. to do so on the Track Your Plaque Forums. Yes, it is a fee-for-membership website, a model that has become necessary to pay for the services we provide (not pay me).

I wish that I could answer all the concerns and questions that come my way, but it's simply physically impossible doing so while maintaining a full-time very busy cardiology practice, developing the Track Your Plaque website (which is becoming an enormous responsibility), publishing scientific data, maintaining hospital responsibilities, and spending time with my wife and family. We're all busy and I'm no different. I'm afraid that it's my responses to blog comments that I will have to sacrifice.

I invite commenters to continue to comment on these posts, as I've learned many new things by reading them and find them helpful feedback. And I do read them. Should an especially helpful comment be made, I will feature it in a new blog post, rather than respond directly.

"Flying in the fog"

I received this wonderful response to The Heart Scan Blog post Hammers and Nails:

I am 65 years old. I had a stent inserted in the "widow-maker" artery (80% blockage) a year ago. I had passed out a couple of times (heart rate dangerously low - 30s). I rode to the hospital in an ambulance. Tests revealed short LBBB episodes; mild mitral regurgitation, mild tricuspid regurgitation. Catherization showed 3 vessel CAD. I was told that a medicated stent was absolutely necessary given the situation; regardless, I have to accept that. A pacemaker was installed to prevent bradycardia and keeps heart rate from dropping below 60. I have 20% L distal main blockage and 90% lesion of the high first obtuse marginal at the takeoff. The right coronary had 60% posterior lateral branch stenosis.

Since then I have reduced TG from 360 to 60, LDL from 89 to 82 (although a few months ago it was in the mid-70s), and increased HDL from 30 to 46. I went from 265lbs to 190lbs and hope to eventually get to 180lb this Spring. I did it by progressing from walking to trotting (slow run) and dietstyle changes (low-GI veggies, fruits, etc.) .













On a recent visit the cardiologist said the the LDL needs to be 70 or below to "freeze" the 90% blockage and gave me a prescription for Lipitor. I asked if there were alternatives, like diet, supplements, etc. He admitted that he did not know about those alternative but did know Lipitor. When the only tool you have is a hammer then everything is a nail. I understand that the 90% blockage is important but will not take the Lipitor to achieve the 12 points reduction. Seems like an overkill.

I asked him if there was a way to evaluate my current condition. I was told there was no way. Basically, if I have no symptoms, good. If I have symptoms then it will have to be evaluated. Death could be the only symptom. I swear he was about to say bypass surgery ($$$$$$!) was inevitable. Something is wrong with this "fly-in-the-fog-and-hope-you-don't- hit-a-mountain" approach. Hope is not a strategy!

I am confident that I can reduce LDL to below 70 based on eliminating wheat-products in my diet plus increasing oat bran in my diet. I also take fish oil daily (EPA/DHA-2g). I am looking for a new cardiologist. I just recently purchased your book and find it very instructive. In the meantime I have an appointment with my primary care physician to discuss implementing the Track Your Plaque program. I realize that the one stent will skew the scan numbers but can be used as a baseline number.



Phenomenal weight loss! That alone has likely cut this man's risk in half. But is that it? Is the cardiologist correct--take Lipitor and hope for the best?

Of course not. There are many additional strategies to employ. Eliminating wheat from the diet is an excellent idea: HDL will skyrocket, triglycerides drop even further, small LDL will drop like a stone, blood sugar and blood pressure will drop. He will have more energy, get rid of afternoon energy slumps, sleep better.

He has already added fish oil. If his cardiologist did not mention this, I would say he was guilty of malpractice. The data supporting the addition of fish oil to the treatment program of anyone with heart disease is overhwelming. GISSI Prevenzione: 11,000 participants--28% reduction in heart attack, 45% reduction in death from heart attack. The Japanese JELIS trial of 18,645 participants--19% reduction in dangerous heart events. It's also clear that omega-3 fatty acids from fish oil also compound the benefits of statin agents, should this man choose to begin Lipitor.

Vitamin D brought to normal blood levels is his next "secret weapon" that will further boost his lipids and lipoproteins further into not just "normal" territory, but beyond belief. Even though we aim for 60-60-60 for LDL-HDL-triglycerides in the Track Your Plaque program, adding vitamin D can yield numbers you've never seen before. It's not uncommon, for instance, to see a 10 or 20 mg/dl jump in HDL.

Identify all other hidden causes of coronary plaque. If all the causes have not been fully identified, how can anyone hope to gain full control over coronary plaque growth?

Re: LDL cholesterol of 89 mg/dl at the start. Of course, this is a calculated value, not measured. Because HDL was low and triglycerides high at the start of his program, this means that true LDL--if actually measured--was probably more like 180 to 250 mg/dl, and it was probably nearly all small. So his cardiologist might have advised a helpful treatment, though for the wrong reasons.

Our reader has gone a long way on his own in creating his own prevention program. But there's yet more to do, particularly if the goal is reversal. It is shocking to me that a man like our reader, clearly articulate and motivated, gets virtually no advice beyond "take Lipitor" after all the procedural benefits have been reaped.

Even though one artery can no longer be "scored" due to the presence of the metallic stent, a heart scan would still be invaluable for long-term tracking purposes, just as we advocate in the Track Your Plaque program.



Copyright 2008 William Davis, MD