Showing posts with label Calories In Calories Out. Show all posts
Showing posts with label Calories In Calories Out. Show all posts

Tuesday, July 1, 2014

COUNTRY JOE KNOWS HOW I FEEL

Is anyone else out there so old that they also remember the song "Here I Go Again" by Country Joe and the Fish from back in 1969?

As I started to think about this blog post, that song popped into my head.  "Here I go again, off down the road again..."

The last time I really posted about what I was eating and how I was doing with my blood sugar and weight was in October 2013, so almost seven months ago.  Every now and then, I just get sick of the whole thing, all the tracking and reporting, and decide to just try to eat like a normal person.  This never works, and I am not sure why I think it will each time I try it for a few to several months.

This last "escape" was no different and I have gained back some weight and have seen my blood sugar get higher and higher.  So with regret and dread, here I go again.  A few weeks ago, I decided to start tracking food and "being good" and I did start to see results, but I was not very serious and gave up quickly, because I hate it so.  The tracking, I mean, not the good results.

Last week, I remembered that I had had good results using Alternate Day Intermittent Fasting.  I kept it up for a while, but eventually abandoned it for a lot of reasons that you can read about here.

But after watching some videos and seeing things a little differently, I have decided to give it another shot, and do it more along the lines of way that Krista Varady promotes.  I ordered her book from the library, and I am going to pick it up after I finish writing this post.

Basically, I think the difference between what she recommends and what I was doing before is that, while I was eating only 300 calories per day spread out into three very small snacks on the days that I would fast, she says to eat 500 calories on a fasting day and eat them all at once, like a regular meal.

The way I did it before was that I would only get to eat a few bites of something on my fast days, and it never satisfied me.  Dr. Varady says that this is a difficult thing for most people to stick to, and they end up overeating on the fasting day.  One of the other problems was that, every other day, I would not get to eat dinner with my husband.  He was on his own, and that never went over well, especially when I had to watch him eat a nice meal while I ate a tiny snack.

This time around, I am going to fast all day until dinner time, then eat a normal meal with my husband, which will come out to around 500 calories.  I have been doing this for a few days now, and fasting until dinner time (or late lunch time, if he will not be home for dinner) has not been a real problem for me.  A little tummy rumbling, but nothing too upsetting.

On the days I do not fast, I will have a fat snack to get me going in the morning, then eat a normal lunch and dinner.  I suspect that the non-fasting days will come out to around 1500 calories.

I know, I know...  I have disparaged calories and calorie counting in the past, and I still feel the same way now about the Calories In/Calories Out method of weight loss.  Using the word "calories" is just an easy way to express how I am keeping my food consumption within a range that will promote normal blood sugar and normal body fat percentage, which are the two things I focus on.

I will continue to eat high fat, moderate protein and very low carb.  I believe that the way the body uses different food macronutrients differs greatly, and that not all calories are alike.

Many people who do this type of intermittent fasting believe that all calories are equal, and that your body cannot differentiate between the calories that come from fat and the calories that come from protein or carbs.  All things being equal, your body will react the same to 1,000 calories worth of Twizzlers as it does to 1,000 calories of bacon.  I wrote a post about that that you can read here.

I can guarantee you that your blood sugar will register the difference!  Plus, after you eat that bacon, you will be satiated for hours, but after eating the Twizzlers, you will be very hungry again very quickly (after you get over that sick feeling that comes with eating all the Twizzlers) and you will want more carbs.

Anyway, before I completely run away on the calories tangent, I will share that I did start eating this way again last week, but had a false start.  I did fine on the fasting day, but overate like crazy on the non-fasting day, and I gained weight.  So, I took a deep breath and started again a couple of days ago.  So far, so good.  I have lost a couple of pounds and my blood sugar has been in the high 70s to the low 80s.

I am now eating normally on the non-fasting days and not falling prey to the old way of thinking, which was, "I better overeat today, because tomorrow I have to fast most of the day!"

THE BEST PART...

I am hoping that this plan will keep me from having to micromanage every bite of food that goes into my mouth.  If this is true, not having to weigh, measure and calculate my food will truly be the best part!

I am now off to the library to get the book.  I'm sure I will learn something new and hopefully will be encouraged enough to keep going.  Many people who eat like this say that it is sustainable for life.  I sincerely hope so!




Friday, June 1, 2012

CALORIEGATE.COM - WELCOME TO MY BLOGROLL









My old blogger friend, Adam Kosloff, started a new blog last year called Caloriegate, and I poured through the whole thing in the past few days.  It's all about a topic near and dear to my heart, which is calories and the "calories in calories out" theory.  As usual, Adam has done a great job of making the science accessible to non-scientists, like myself, and the whole thing makes a lot of sense.  I agree with what he imparts, and I would read his blog even if it didn't, because I love the illustrations!  If you want to start reading his blog, I suggest you start at the beginning and work your way up to the present.  Click here to jump over to Caloriegate.com.

I already have Adam's other website - Why Low Carb Diets Work - in my list of favorite websites, found in the right hand column here.  I highly recommend that one, too.

Welcome to my blogroll, Adam, and I look forward to reading new posts as you write them!  To find the blogs I follow, look right and scroll down.

Friday, July 22, 2011

CALORIE THEORY, AGAIN!? - DIETFORHUMANS.COM


"The truth is, the conventional wisdom about why we get fat is simply wrong. It’s not about energy balance; it’s not about “overconsumption of calories” or “taking in more calories than we burn.” It’s about something else entirely: how the human body regulates fat metabolism and the accumulation of fat in our adipose tissue."
       -Gary Taubes

Even though our understanding of biology has improved and the causes of obesity are better understood, we still have some flat Earthers that can’t get past the overly simplistic and trivial “calorie theory,” aka “eat less, move more.”

Like anything else, reality depends on the frame of reference of the observer. If someone has a minor weight issue, or people around them do, a simple “eat less, move more” more approach does work. This gives one the erroneous conclusion that this is all that matters. It’s like someone that only sees the world as flat-



“The world must be flat, just look at it.”



This is how the world really is. For day to day living, this does not matter to a lot of people. All they need to know is east, west, north, and south. The same can be said for the folks hung up on “eat less, move more.” If this is all they see, and it seems to work, they think that this is all there is.

What the Flat Earthers Don’t See:

Calorie theory ignores hormones. The above quote by Taubes, author of “”Why We Get Fat,” is a quick summary of why hormones drive weight. Calorie theory is simply wrong, but it just appears to be correct if one has limited experience or a limited frame of reference.

People who do lose weight by moving more and eating less have not done enough damage so that hormones matter much. Good for them, but it doesn’t not apply to everyone. Their calorie theory is incorrect in the same way that the Earth is not flat.

Who Cares?

Hormones matter a lot, when they matter. Hormones matter when one is insulin resistant, when leptin signaling is off, when thyroid hormones are out of whack, when their endocrine system is wrecked after taking steroid medications, and for a lot of similar reasons.

Some will say that obesity is the cause of the above, and stop making excuses. This is also wrong. It doesn’t matter anymore once the weight is there and the hormone problem is real. What matters is what to do about it. It’s not a reversible process where you just eat less and move more, and the problem goes away. If this were true, there would be no diet books and no diet websites. Life would be simple, but it just isn’t. The world is not flat.



Wednesday, May 18, 2011

LCHF IS THE S***

This is a riot and so true:

Tuesday, February 1, 2011

COUNTING CALORIES IS UNNATURAL - FRED HAHN

Here is a recent blog post from Fred Hahn, co-author with the Drs. Eades of The Slow Burn Fitness Revolution.  This is what I try to communicate, but can never find the right words.  Thanks, Fred!

Though many have said this before I have, and as Gary Taubes points out so succinctly in his new book Why We Get Fat: And What to Do About It (Affiliate link, meaning, if you click on it and buy Gary’s book I make a shekel or two), counting calories is an exercise in futility.

Notice that I did NOT say that if you reduce you caloric intake without altering energy expenditure, you won’t lose weight. Of course you will. What I DID say is that it is an exercise in futility.

What this means is, you just can’t do it because you can never know what your precise caloric needs are at any given time nor can you precisely determine your exact energy expenditure. And since a mere 20 calorie a day surplus can (supposedly) add up to ~30 extra pounds of fat gain over the course of 30 years, counting calorie is an exercise in _________ (fill in the blank).

Any expert who tells you to count calories in order to lose weight or specifically to lose fat needs to have his forehead gently smacked and made to look around the natural world a lot more closely. He also needs to understand that fat loss is not a numbers game, it a hormonal game. And it is a game that has very strict rules and regulations. If you don’t play by them, you don’t pass Go and collect your $200.

Animals in the wild are never obese. Their bodies carefully regulate their fat stores as needed. And in case you hadn’t noticed, animals never count their calories (yes I know they can’t count). What I mean is, they never purposefully restrict the amount of food they eat. They eat when they are hungry. They eat when they need to eat, that is. Even when food is abundant and plentiful, wild animals do not overeat to the point of obesity.

Let me state this loud and clear: No one in the history of human existence ever became obese or even over fat because they STOPPED counting their calories. 

Shall I state that again?

If you eat the foods that you were “designed” or evolved to eat, you will satisfy all of your nutrient requirements with enough food to keep your body fat stores ample but not so much that health is compromised.

Fat is not just blobs of useless goo. Body fat serves many important purposes in our bodies, much more than as a backup fuel source when food is scarce. In short, fat is good. Too much, however, can be bad.

I’ve said this in other blog posts but it needs to be said again: if you eat a diet rich in wild, grass-fed, free-ranging animals free of chemicals and additives and limit the rest of your diet to other natural foods like seasonal vegetables and seasonal fruits without grains of any kind (no animal on earth eats grains as a staple food), you can’t become obese. And if you already are obese, unless a lifetime of eating unnaturally has severely damaged your metabolism requiring medical intervention, all excess body fat will be shed without ever having to count a single calorie in your life.

No – I don’t have a single scientific reference to support this claim – unless of course you accept nature and centuries of human evolution as a credible source.

If you are obese or over fat, here are the steps to take:

1. See a qualified bariatric physician that understands what eating real food means. Here is a list of physicians that know their stuff.

2. Remove all grains and grain based foods from your diet. They contribute to hormonal disruption and are the main modern food source that is contributing and causing the obesity and diabetes epidemic.

3. Eat wild, free ranging, grass-fed animals to your hearts content. These foods should make up the bulk of your calorie intake.

4. Eat non-starchy vegetables and fruits seasonally. Consider limiting legumes as well.

5. Perform 1-2 high intensity, short duration resistance training sessions a week. As for activity, do what pleases you but be safe.

Resource books on fats (affiliate links):

Eat Fat, Lose Fat: The Healthy Alternative to Trans Fats

Know Your Fats : The Complete Primer for Understanding the Nutrition of Fats, Oils and Cholesterol

The Fats of Life

So forget about counting your calories. It’s a waste of time and energy that is better spent on giving your kitchen a metabolic makeover. Out with the sugar and in with healthy sources of protein and fat.
You can thank me later.

(Click here to read the full article and readers' comments.)

Friday, January 28, 2011

FAT MICE AND THE LAWS OF THERMODYNAMICS - TOM NAUGHTON

The latest blog post from Tom Naughton, the maker of the movie Fat Head:

In a Weight Watchers discussion group, someone recently posted this advice:

The key to successful weight loss is simple mathematics . . . ingest fewer calories than calories expended in a day.

That second part of that sentence is, of course, correct. Your body won’t tap the energy reserves in your fat cells unless the energy is needed.  You have to expend more than you ingest.  But that doesn’t mean successful weight loss is all about “simple mathematics.”  Biological systems aren’t simple.

Unfortunately, too many people grasp (again, correctly) that gaining or losing weight requires an imbalance between the energy consumed and the energy expended, but then take a leap in logic and conclude that:
  1. Consuming additional calories is the root cause of becoming fatter (as opposed to a response to storing more calories as fat).
  2. Everyone who becomes fatter is either eating more or moving less than before.
  3. Consuming fewer calories will automatically lead to a lower weight and less body fat.
In other words, they think it’s about simple mathematics, just like a savings account.  To dispute any of these conclusions, we’re told, would be to ignore the laws of thermodynamics. So let’s see how that contention holds up in the face of controlled research.

In a study published earlier this year, researchers conducted two experiments, each lasting three or four weeks, in which obese mice were divided into two groups: a control group that ate freely (ad libitum) and a calorie-restricted group. In the first experiment, researchers first recorded the average caloric intake of the mice when they were allowed to eat freely, then limited the calorie-restricted group to 95% of that intake. In the second experiment, researchers observed the on-going caloric intake of the mice allowed to eat freely, then limited the calorie-restricted group to 95% of that intake. In other words, if the mice eating freely ate more, the calorie-restricted mice were given more food … but they were still eating 5% fewer calories than their freewheelin’ cousins.

A legitimate criticism of many diet studies is that the researchers relied on food-recall surveys or diet journals to determine how much people ate. Those methods can be notoriously inaccurate. Realizing this, the researchers on this study elected not to allow the mice to keep their own diet journals. Instead, the researchers precisely measured and recorded how much each mouse ate — even going so far as to examine the little critters’ cages and subtracting any bits of food they found from the food-intake totals.

In both experiments, researchers took precise before-and-after measurements of weight, lean body mass, and adipose-tissue mass. In the second experiment, they also used infrared sensors to track locomotor activity levels (”moving around” to us laypeople), and measured oxygen consumption and carbon-dioxide output to calculate how much energy the mice expended. I’d say that’s about as precise as a diet study gets.

Now, according to Jillian Michaels and the other leading experts in thermodynamics, there are only a couple of possible outcomes for these experiments:
  1. The calorie-restricted mice, who were prevented from making little pig-mice of themselves, ended up weighing less and were leaner.
  2. If the calorie-restricted mice somehow ended up fatter, it could only be because they were far less active than the mice who ate freely.
Yup … if you get fat, by gosh, it means you’re either eating more or moving less. Now let’s look at the actual results:

At the end of first experiment (four weeks), the calorie-restricted mice weighed a teeny bit less than their free-eating counterparts — the difference was not statistically significant, but it was there. However, the calorie-restricted mice also had 68.5% more fat mass, and 12.3% less lean mass.
Being put on a diet made them fatter.

At the end of the second experiment (three weeks), the average weight for both groups was virtually identical — it was also virtually identical to their baseline weights. But the calorie-restricted mice had 43.6% more fat mass and 6.4% less lean mass than the free-eating control mice. Once again, being put on a diet made them fatter.

Well, clearly, those fat little calorie-restricted mice must’ve spent too much time sitting around watching reruns of The Biggest Loser while their free-eating cousins were whipping themselves into shape by running on the big wheel, right?

Nope. According to the study data, there was no difference in locomotor activity levels between the two groups.

The calorie-restricted mice ate less, they moved around just as much, but they ended up weighing the same as the mice allowed to eat freely, and also ended up with more fat and less muscle. Oh, dear me … did these mice find a way to violate the laws of thermodynamics?

No, heck no, for the thousandth time, NO.

The researchers didn’t take body-heat measurements (too bad), but reported that the calorie-restricted mice expended significantly less energy: 5% less overall, and 20% less while at rest. Simply put, their metabolisms slowed down, even though they were just as physically active.  No laws of thermodynamics were violated in the process.

I once sent a link to this study to someone who insisted that according to the laws of thermodynamics, weight gain is caused by eating more or moving less, period.  His reply was something like, “That doesn’t prove anything!  I’m not a mouse.  I’m talking about people.”

Well, I agree that mice aren’t little furry people, which is why I’m not concerned when this-or-that food is shown to trigger cancer in mice.  (Mouse chow probably wouldn’t agree with me either.)  But remember, we’re talking about The Laws of Thermodynamics here.  They don’t apply to one species, but not another.  If mice can become fatter without eating more or moving less, yet somehow avoid violating the laws of thermodynamics in the process, then so can people.

The researchers were at a bit of a loss to explain why the calorie-restricted mice grew fatter, but I’m pretty sure we can rule out gluttony and sloth. They suggested perhaps the mice were reacting to the stress of a limited food intake.

“Reacting,” of course, means something hormonal was going on. (It wasn’t thyroid hormone. The researchers checked.) Perhaps the calorie-restricted mice produced more cortisol. Perhaps evolution geared the mice to respond to the threat of starvation by accumulating more fat, even if it means sacrificing lean tissue.

The point is, they didn’t get fatter by eating too much, and they didn’t get fatter because they decided to expend less energy. They began to expend less energy (in spite of being just as active) because they were being hormonally driven to accumulate more fat, even on less food.

Doesn’t that sound something like the process described by a best-selling science journalist who supposedly doesn’t understand that his hypothesis would violate the laws of thermodynamics?

(Click here to go to the article and see the comments by other readers.)

Monday, January 3, 2011

TOM NAUGHTON - "CALORIES DO COUNT"

Calories do count. Your body can raise or lower your metabolism in response to a change in the total calories or type of calories consumed, but calories don’t magically disappear. Some people who either didn’t read Good Calories, Bad Calories or didn’t grasp the section titled “Energy Balance” have accused Gary Taubes of proposing a hypothesis that would violate the laws of thermodynamics, but that isn’t the case. He proposed that if hormones are telling your body to store fat, your body will listen and obey as much as possible … slow your metabolism, make you feel lazy so you don’t move as much, ramp up hunger so you eat more. All of those factors work to increase the calories in and decrease the calories out.

When insulin is high, you store a higher proportion of calories as fat, which prompts you to eat more because you run out of fuel at the cellular level. Ignore the hunger, and your body may slow your metabolism in response. If you lower your insulin level, you’ll have an easier time burning body fat for fuel. In the complete absence of insulin, you’ll barely be able to store fat at all, but other than type 1 diabetics, we always produce some insulin in response to food — and good thing, too; we need insulin to make use of nutrients. The point of going low-carb is to avoid producing too much insulin.

Some people are very resistant to becoming fat, so their bodies find a way to burn off or waste the extra calories if they over-eat. Most of us aren’t that lucky, so if we overwhelm our bodies with excess calories, we’re going to gain weight. The reason a low-carb diet works for me is that I no longer want to overeat … since I’m not storing as many calories as fat as when I ate a high-carb diet, my appetite is controlled naturally, without counting calories.

Click here to see his other comments.

Sunday, December 12, 2010

CALORIES IN CALORIES OUT - PSIPSINA

This from psipsina:

One of the more irritating things about die-hard proponents of low-calorie weight loss diets is how they talk about “the laws of thermodynamics” as though they have any idea what they actually mean, or how they might be applied to human nutrition.  Usually, I struggle mightily against the sin of arrogance, but I must say that when I read what passes in the press for nutrition writing, I am confident that I understand the laws of thermodynamics, as well as all the other laws of physics, better than most journalists do.

So, in today’s edition of Dumb Things the Diet Dictocrats (tip o’ the hat to Sally Fallon for the term Diet Dictocrats) Say, I am going to take on the tired notion of “calories in, calories out.”  In so doing, I hope I can make amends to the first law of thermodynamics for the sins that have been committed in its name.  I don’t use the word sins lightly; what else can you call it when someone like Jane Brody, who actually has a degree in biochemistry and should know better, advises the American public to consume exactly that diet that is most likely to lead to heart disease, diabetes, stroke, cancer, autoimmune disorders, and a host of other grievous ills, and on no better evidence than a fundamental misunderstanding of energy use and storage?

I am picking on Brody not because she’s any more egregious than any other writer, but because this article of hers provides an example of just exactly where the popular understanding of calories goes awry.  Here she “explains” to the reader how thermodynamics apply to the human body:
With respect to weight gain and loss, the laws of thermodynamics can be translated as: Calories consumed must be used or they will be stored as body fat.
So far, I have little quibble with what she says, though, as you’ll see below, I think it would be more accurate to say that “calories consumed must be disposed of.”  But before I go much further, I have to say that a surefire clue that a nutrition writer is a little fuzzy on the subject of thermodynamics is when he starts talking about the laws, plural, of thermodynamics.  What he means is the first law, which states that the amount of energy in a closed system does not change, the implication being adding energy to such a system results in a net increase in energy unless an equal amount of energy is subtracted from the system.  This law is often expressed as Energy is neither created nor destroyed.  The zeroth (yes, there really is one), second, and third have little to do with the total energy of a system.

So if I don’t fundamentally disagree with “calories in, calories out,” what is my beef?  The problem is that writers like Brody don’t understand the “calories out” portion of the equation.  And this misunderstanding is based on at least three fundamental myths, assumptions, or oversimplifications about how calories are expended.

Myth 1:  Calorie burning is 100% efficient.

Brody’s first poorly justified assumption is that the human body burns calories 100% efficiently and never wastes any – any that are not burned are stored as fat.  Indeed, in the article cited above, she goes on to say:
The body does not waste energy, no matter what its source.
This is an assumption, not a fact, and it is an assumption that is easily refuted.  The popular press delights in talking about the so-called dangers of ketosis, the metabolic state induced by significant carbohydrate restriction.  And yet they do not seem to catch on to the fact that the very process of ketosis results in a waste of body energy!  Let me say that again:  ketosis is a process that results in a waste of energy.  An analogy might be helpful – if you burn a log of wood for a certain amount of time, you will release or use energy in the form of light and heat, and you will probably end up with a large chunk of black stuff called charcoal.  You could throw out this hunk of charcoal.  But the charcoal still has energy, as anyone who has ever used a charcoal grill will understand, so you could also burn the charcoal and cook a steak over it.

The body’s metabolism of fat is very much like this.  When fats are burned, a by-product called ketones is produced.  Ketones are incompletely burned fat molecules, and like charcoal, they still contain some energy.  Some of the ketones can be and are burned for further energy; the heart and brain in particular will suck up ketones to use as fuel whenever they are present.  But if more ketones are produced than can be used, as is the case when fat is the primary source of dietary calories, the body excretes the unused ketones in the urine, breath, and sweat.  The body does not have a mechanism for storing excess ketones for later.  It’s like burning wood and tossing out most of the charcoal because there’s no place to keep it – a waste of energy.  And if you are overweight, wasting energy is exactly what you want to do.

Myth 2:  Basal metabolic rate never adjusts.

A person’s basal metabolic rate is the number of calories required just for low-level life processes – breathing, heartbeat, digestion, brain and nerve functions, and so forth.  You can think of it as the number of calories you’d need if you spent 24 hours lying very still.  The total number of calories a person expends in a day equals the person’s basal metabolic rate plus the number of calories expended in activities (plus, as we saw above, calories wasted by the incomplete burning of fat).
The way most popular nutrition writers understand this, a person’s basal metabolic rate (and for that matter, the number of calories expended by a given activity) does not respond to increased caloric intake.  Oddly, though, these same writers will easily grant that basal metabolic rate does respond to decreased caloric intake.  In fact, they use this phenomenon, which is well documented, to explain the failure of most people to lose significant amounts of weight, or keep the weight off, on low-calorie diets (which makes you wonder why they continue recommending such diets.  But I digress).  Our bodies, they say, evolved to store weight easily in times of plenty and get rid of it slowly in times of famine.  When you diet, they say, your body thinks a famine is impending and holds on to every last calorie it can.  People whose bodies did not work this way, they reason, would have failed to make it to reproductive age during famine; so we have our famine-resistant ancestors to thank for the inheritance of a gene that makes it hard for us to lose weight.  This is sometimes known as the Thrifty Gene argument.

This argument always makes me think that they don’t understand evolution any better than they understand thermodynamics!  I happen to think that the theory of evolution is just about the most brilliant product of the mind of Western man, but the problem with explaining our current condition by recourse to evolution is that all we know is that at some point in human history, conditions favored genes that are prevalent in our genome today.  Exactly what those conditions are is usually nothing but speculation, and you can almost always spin an equal and opposite story.  (This also drives me nuts when it’s used to explain the psychosocial differences between men and women, but again I digress.)  In the case of metabolism, an equal and opposite story would be that, in times of plenty (and surely there have been times of plenty in our evolutionary history – famine is a relatively recent occurrence in human history, tied to the development of agriculture and the subsequent dependence of humans on very small numbers of different crop species), it would be a disadvantage for our ancestors to gain more than a few pounds.  An obese hunter-gatherer would have a disadvantage in chasing prey or in running away from predators.  Furthermore, we know that obesity is associated with debilitating conditions like heart disease and diabetes.  Therefore, the obese would’ve been eaten by massive carnivores or died of heart attacks or diabetes complications and would’ve failed to reproduce.  Therefore, goes my story, our bodies have evolved to waste calories by kicking up our metabolisms when food is plentiful.  Let’s call this the Spendthrift Gene argument.

Is my equal and opposite story true?  I have no idea, any more than an honest proponent of the Thrifty Gene argument will claim to know if their story is true.  These stories are both what the ancient Greeks called “likely stories,” stories that “save the phenomena,” i.e., account for observations in a more or less plausible way.  We do observe that people burn fewer calories when they consume fewer calories, and – the dirty little secret that the low-calorie people don’t tell you, maybe because they don’t know it themselves - we also observe that people who consume more calories actually burn more calories, but only on low-carbohydrate diets.  I am not going to go into a thorough review of the research here; Gary Taubes devotes a good portion of Good Calories, Bad Calories to an examination of the research.  Let’s just say that studies have been done where participants were put on high-fat diets containing 3,000, 5,000, or even 10,000 calories per day and maintained stable weights or even lost weight without increasing their activity levels.

Myth 3:  Anything that can be burned will be burned immediately or stored to be burned later.  There are no other choices.

We consume three nutrients that can be burned, carbohydrates, proteins, and fats.  And in fact, carbohydrate is good for nothing but burning.  It’s like gasoline – you can either ignite it with a spark and burn it now, or you can store it in your gas tank to burn later.  And with carbohydrates, it is true that if you consume more than your body can use, your body saves them for later.

Protein and fat, however, have a host of uses in the body in addition to generating energy.  Protein is used to build muscle cells, to create and repair cell membranes in all cells, and to create enzymes that make it possible for all your body functions to occur at the relatively low temperature of 98.6 degrees.  Fat transports certain nutrients that are not soluble in water, acts as a precursor to a number of hormones, insulates neurons to ensure that electrical charges are carried properly, and, like protein, is used to create and repair cell membranes.  Furthermore, fat and protein can both be broken down and recombined into whatever form the body needs.  So you might consume muscle protein from a cow, and the body might break it down and rearrange it to make a digestive enzyme, or incorporate it into the membrane of a brain cell, or use it to make the red blood cell protein hemoglobin.  Protein and fat are like wood – you can certainly burn it for energy, but you can also use it to build a house, or grind it up and make paper out of it.

It should be obvious that we use our food for something other than burning – if it were not, we’d collapse into little unorganized puddles of organic compounds (oh, hey, that’s the second law of thermodynamics, if you’re interested).
—————————
So the next time someone tries to wave the laws of thermodynamics in your face as an explanation of why low-calorie diets are better than low-carb diets, have a little fun with them.  Ask them to name the laws of thermodynamics and explain to you how they are applied to human metabolism, or better yet, ask them exactly how calories out are calculated.

To read the full article, click here.

THE MYTH OF LOW CALORIE DIETING FOR WEIGHT LOSS EXPOSED

 This from Elizabeth Walling from Natural News:

Anyone who has tried to lose weight has heard the age-old formula: eat less, exercise more. This is intended to create a calorie deficit, where the body is using up more than it's taking in. The idea is to coerce your body into burning stored fat, but for many people low-calorie dieting ends up burning them out long before the fat is gone. This is not because of a lack of self-control or willpower. It happens because the very fundamentals of low-calorie dieting are downright wrong.

For people trying to lose weight by cutting calories, food suddenly becomes the enemy instead of a means to genuine health. Hunger pangs become a sign of success instead of a sign the body is craving nourishment. This kind of twisted reality - a world where we desire starvation to maintain a healthy weight - is contributing to modern disease and misery.

No one can actually say a certain amount of calories is right for everyone. There are many factors that can influence how many calories you need, such as genetics, lifestyle, exercise habits, etc. It's interesting to note the World Health Organization declared that starvation begins to occur under 2,100 calories per day, a number far more than most dieters assume they need. While we work so tirelessly to end starvation in third-world countries, in Western society we are starving ourselves on purpose.

To avoid the disaster of low-calorie dieting, we must define the term "low-calorie." It has come to have different meanings over the years. Not long ago, 1,200 calories per day was the standard number for dieting, and 800-calorie diets were not uncommon (900 calories, by the way, was the typical diet fed to prisoners in concentration camps during the second World War). These very-low-calorie diets still exist today. So many people cut back to 1,600 calories per day and assume this is not low-calorie dieting. This is an illusion. If you are eating less than your body needs to function at its best, then you are low-calorie dieting. When you are eating less than you need, your body perceives it as a signal of starvation. It is a simple, biological fact.

The idea of calories in versus calories out is a complete myth. The body is far more complex than that. There are hundreds upon hundreds of activities performed in your body at any given time - it needs fuel to perform these functions. If your body is not receiving the materials it needs from your diet, then it has no choice but to take from its only other source - itself. Most people assume your body will only use its stored fat for its various needs, but this is not true. Your body will also draw from your bones, muscle tissue and organ tissue. You may lose some fat, but it will be at the sacrifice of vital living tissues. This is not a good state to be in, so your body slows down your metabolism to prevent its own destruction. After all, your body has one natural instinct - to survive.

Many people who have been on low-calorie diets experience side effects like fatigue, depression, hair loss, dry skin, poor memory, difficulty concentrating, mood swings, irregular menstrual cycles and a lack of interest in sex. Over time symptoms worsen and the body weakens until illnesses and allergies become frequent, and eventually degenerative diseases are more likely to occur. This deterioration may be fast or slow, depending on how extreme your diet is.

Another side effect of low-calorie dieting: when people focus on slashing calories, usually fat is the first to go - because fat has nine calories per gram, compared to four calories per gram in protein and carbohydrates. It may seem like a logical choice, but it's a poor one. The body treasures its dietary fat, which is used to coat every cell and is required for countless functions in the body. Getting plenty of healthy fats also satiates the appetite and prevents food cravings, so cutting them out does nothing but hinder weight loss efforts. Eliminating healthy, natural fats seems to exacerbate and accelerate all of the above-mentioned side effects of low-calorie dieting.

Eventually most people find it difficult to maintain a low-calorie diet, and after their diet many find they must eat fewer calories to avoid weight gain than before. Others continue on the low-calorie bandwagon, usually hitting a plateau which triggers them to "buckle down" and cut even more calories or exercise excessively to cause the coveted calorie-deficit. The body feels the effects of starvation even more, and fights back. At this point it often feels like your body is working against you - and you're right. It's fighting you with everything it has. The body will stop clinging so desperately to stored fat when it no longer fears starvation because it's receiving proper nourishment from food.

The idea of eating hundreds more calories every day may seem unusually generous to some, but it is not permission to eat irresponsibly. What's most important is making sure the foods you eat are natural, nutrient-dense choices. Choose whole foods - your body understands how to use these foods to their full advantage. Eat foods in the most natural state possible, and implement traditional practices like soaking grains, beans and nuts overnight before eating or cooking them. Avoid processed foods like refined grains, sugar, alcohols, aspartame, saccharin, monosodium glutamate, sodium nitrates and nitrites, and the rest of the gamut of food additives. These impair the body and prevent real nutrients from being utilized properly.

It's time to rethink the tired theory of low-calorie dieting. It's time to consider the fact that the body will quit hanging on to stored fat when it is properly nourished with healthy, natural foods it can use to rebuild. It's time to stop resisting food and realize it is the only path to healing.

To read the full article, click here.

Sunday, December 5, 2010

THE INANITY OF OVEREATING - GARY TAUBES' FIRST BLOG POST

This from Gary:

My new book is coming out at the end of the month. It’s called Why We Get Fat and the subtitle is What To Do About it. The book concentrates more on the first because once you understand why we get fat, the what to do about it part is pretty obvious. And the problem is that the conventional wisdom on why we get fat is almost incomprehensibly naïve and wrong-headed.

My goals in writing the book, as I explain in an author’s letter, are to push the issue (I keep wanting to use the cliché, “throw down the gauntlet,” but as I get older I notice I keep wanting to use more and more clichés, and it’s a bad sign for a writer) on this nonsensical notion that we get fat because of overeating and sedentary behavior, and to distill down and extend some of the arguments from my previous book, Good Calories, Bad Calories, into a book that can easily be airplane reading on any flight covering more than one time zone.

In this blog, if it goes as planned, I hope to ask questions as much as provide answers. Over the past decade, as I’ve read more than a century’s worth of literature on obesity and nutrition and chronic disease, I’ve been consistently amazed at the ability of researchers, learned commentators (and the far greater ranks of unlearned commentators), physicians and public health authorities to accept some of the rote ideas about these excruciatingly important subjects without seemingly giving it any conscious thought whatsoever, or without wanting to ask the kinds of questions that a reasonably smart junior high school student should ask if given the opportunity. To this date, I don’t understand this failure of intellect, although I’ll almost assuredly be returning to it regularly in future blogs.

So what do I mean about overeating being a nonsensical explanations for why we get fat? I was just reading Jonah Lehrer’s latest column in the Wall Street Journal–“The Real Culprit in Overeating.
Now Lehrer is one of the most talented science writers working today. I’m tempted to say one of the brightest young science writers, but that would be to do him a disservice. He’s as good as any of us at any age. But in this column he falls short, as he’s working outside his area of expertise. (A common problem with most science and health writers is that we often write about a different subject every week or month, so if we’re being fed nonsense by the local experts in any particular field we will typically pass that nonsense along to the readers because we don’t know enough not do otherwise.)

The underlying assumption of Lehrer’s column is that we get obese because we overeat, and evidence of the fact that Americans eat too much is that a third of us are obese. Okay, so let’s take a look at this concept from a less than conventional perspective and see what questions we might naturally ask.
First, obese people tend to be weight stable for long periods of their life, just like lean people. So when they’re weight stable, the obese and overweight are obviously in energy balance. They’re not overeating during these periods of stable weight. They’re eating to match their expenditure, doing exactly what the lean do (and get copious credit for). So one obvious question is why the overweight and obese are only in energy balance when they’re carrying 10, 20, 30 or maybe 100 pounds of excess fat, and lean people are in energy balance without the excess? What’s the culprit for that? Because the problem isn’t that the obese overeat when they’re obese, it’s that they overeat when they’re lean and they continue to overeat until they become obese.

Second, let’s say you’re carrying around 40 pounds of excess fat and you put on that 40 pounds over the course of 20 years, as many of us do. When you’re in your late 20s, say, you’re still lean, and then, lo and behold, you celebrate your fiftieth birthday and you’re obese and your doctor is lecturing you on eating less and getting to the gym regularly (and probably writing you a prescription for Lipitor, as well). Now, if you gain 40 pounds of fat over 20 years, that’s an average of two pounds of excess fat accumulation every year. Since a pound of fat is roughly equal to 3500 calories, this means you accumulate roughly 7000 calories worth of fat every two years. Divide that 7000 by 365 and you get the number of calories of fat you stored each day and never burned – roughly 19 calories. Let’s round up to 20 calories, so we have a nice round number. (In the new book I discuss this issue in a chapter called “The Significance of Twenty Calories a Day.”)

So now the question: if all you have to do to become obese is store 20 extra calories each day on average in your fat tissue — 20 calories that you don’t mobilize and burn — what does overeating have to do with it? And why aren’t we all fat? Twenty calories, after all, is a bite or two of food, a swallow or two of soda or fruit juice or milk or beer. It is an absolutely trivial amount of overeating that the body then chooses, for reasons we’ll have to discuss at some point, not to expend, but to store as fat instead. Does anyone – even Jonah Lehrer or the neuroscientists he consults – think that the brain, perhaps in cohort with the gut, is making decisions about how much we should eat, on how long we stay hungry and when we get full, so that we don’t overshoot by 20 calories a day. That’s matching intake to expenditure with an accuracy of better than 1 percent. (We consume, on average, about 2700 calories a day, so matching energy in to energy out and not overshooting by 20 calories requires better than one percent accuracy.) And, of course, if we only overshoot by ten calories a day on average, we’re still going to put on 20 pounds of excess fat in 20 years. So really when we talk about being in energy balance – or practicing energy balance, as the experts now like to say – we actually have to be perfect in our matching of intake to expenditure or we’re going to get inexorably fatter (or leaner, if we err on the side of going hungry), or at least we have to average perfection over decades.

One way to get around this is to assume that we overeat by this trivial amount for a few years on end and then we realize we’ve put on five or ten pounds – maybe our clothes no longer fit well or we’ve had to let out the belt a notch or two – and then we decide to undereat every day for however long it takes to make up for it. So now we walk away from the table hungry until all is back to leanness. But then how do animals do it? They don’t have mirrors or clothes to tell them they’re getting fat, and the world is full of animals that have plenty of food available all year round, plenty of opportunity to overeat if they want to and do so long enough to get chubby. And yet the only animals that get chronically obese are those that get their food directly from humans – in the laboratory, in the home or the zoo, or at the dinner table, since humans happen to be animals, too.

Considering the fact that not getting fatter year in and year out means literally matching energy in to energy expended without error for years on end, do we really think that this job is done by the brain, by either conscious behavior, or some system that listens to signals from the body and then puts a halt on eating behavior when it decides enough food has come in that the amount so far expended or likely to be expended in the near future is about to be exceeded? Here’s the idea: your gut is sending signals to this monitoring system in the brain and that monitoring system is tallying up calories consumed until it finally senses that it’s near the limit of intake. Uh oh, it’s thinking, that last bite of that hamburger is not going to be expended, abort abort! Put down the fork! Walk away from the table!

If you were designing an organism that didn’t accumulate excess fat in the fat tissue (in other words, any organism that isn’t human or isn’t getting fed by humans, directly or indirectly) would you leave it up to a different organ entirely, an organ off-site so to speak (the brain), to assure that calories consumed matched calories expended, so that no excess energy managed to somehow sneak into the fat tissue, without the fat tissue having any say in the matter? Or would you give the regulation to the fat tissue itself and let it do the job?

The reason people believe we get fat because of overeating and sedentary behavior is because they believe the laws of thermodynamics somehow dictate this to be true. In particular the first law, which tells us that energy is conserved, so if a system takes in more energy than it expends, the energy contained in the system has to increase. If that system happens to be our fat tissue, than the fat tissue accumulates fat. That’s the logic. So if we eat more than we expend, we get fatter and the logic turns this around to say that we get fat because we eat more than we expend. And so, overeating and sedentary behavior are the causes. This is the logic that leads virtually every government health agency and independent health organization (the AHA, the AMA, you name it) to have some variation of this World Health Organization statement on its website or in its promotional material: “The fundamental cause of obesity and overweight is an energy imbalance between calories consumed on one hand, and calories expended on the other hand.”

But now imagine that instead of talking about why we get fat, we’re talking about a different system entirely. This kind of gedanken (thought) experiment is always a good way to examine the viability of your assumptions about any particular problem. Say instead of talking about why fat tissue accumulates too much energy, we want to know why a particular restaurant gets so crowded. Now the energy we’re talking about is contained in entire people rather than just the fat in their fat tissue. Ten people contain so much energy; eleven people contain more, etc.. So what we want to know is why this restaurant is crowded and so over-stuffed with energy (i.e., people) and maybe why some other restaurant down the block has remained relatively empty — lean.

If you asked me this question — why did this restaurant get crowded? — and I said, well, the restaurant got crowded (it got overstuffed with energy) because more people entered the restaurant than left it, you’d probably think I was being a wise guy or an idiot. (If I worked for the World Health Organization, I’d tell you that “the fundamental cause of the crowded restaurant is an energy imbalance between people entering on one hand, and people exiting on the other hand.”) Of course, more people entered than left, you’d say. That’s obvious. But why? And, in fact, saying that a restaurant gets crowded because more people are entering than leaving it is redundant –saying the same thing in two different ways – and so meaningless.

Now, borrowing the logic of the conventional wisdom of obesity, I want to clarify this point. So I say, listen, those restaurants that have more people enter them then leave them will become more crowded. There’s no getting around the laws of thermodynamics. You’d still say, yes, but so what? Or at least I hope you would, because I still haven’t given you any causal information. I’m just repeating the obvious.

This is what happens when the laws of physics (thermodynamics) are used to defend the belief that overeating makes us fat. Thermodynamics tells us that if we get fatter and heavier, more energy enters our body than leaves it. Overeating means we’re consuming more energy than we’re expending. It’s saying the same thing in a different way. (In 1954, the soon-to-be-famous — and often misguided, although not in this case — nutritionist Jean Mayer said that to explain obesity by overeating was about as meaningful as explaining alcoholism by overdrinking, and merely reaffirmed, quite unnecessarily, the fact that the person saying it believed in the laws of thermodynamics.) Neither happens to answer the question why. Why do we take in more energy than we expend? Why do we get fatter?

Answering the “why” question speaks to actual causes. In the restaurant analogy, okay, maybe this restaurant has particularly great food, or it’s happy hour; the drinks are cheap. Maybe it’s pouring outside so a lot of people ran into the restaurant to stay dry. Maybe every other restaurant in the neighborhood, including our lean restaurant down the block, was recently closed by the local health bureau and this is the only one that didn’t have cockroaches in the kitchen and so remained open. Maybe it’s in the theater district and the shows just got out and now every restaurant in the neighborhood is packed with the post-theater crowd. Maybe the word has spread that Brad Pitt and Angelina Jolie frequent this restaurant regularly, or Oprah, and this attracted a crowd hoping for a glimpse of celebrity.

All these would be valid answers to the question we asked. Some speak to the conditions inside the restaurant (the quality of the food, the price of the drinks, celebrity customers); some speak to conditions immediately outside (a rain storm, no competition, the theater schedule). They all provide the causal information we’re seeking. They answer the “why” question. That more people are entering than leaving doesn’t. It’s what logicians call “vacuously” true. It’s true, but meaningless. It tells us nothing. And the same is true of overeating as an explanation for why we get fat. If we got fat, we had to overeat. That’s always true; it’s obvious, and it tells us nothing about why we got fat, or why one person got fat and another didn’t.

Some obesity experts are intuitively aware of this problem, which is why they’ll say, as the National Institutes of Health does on its website, that “Obesity occurs when a person consumes more calories from food than he or she burns.” By using the word occurs, they’re not actually saying that overeating is the cause, only a necessary condition. (It’s like saying “a crowded restaurant occurs when more people enter than leave.”) They’re just saying that when one thing happened – obesity –the other thing also happened – consuming more calories from food than we expend. And now it’s up to us to say, okay, so what? Aren’t you going to tell us why obesity occurs? Rather than tell us what else happens when it does occur.

As for the great majority of experts who say (and apparently believe) that we get fat because we overeat or we get fat as a result of overeating, they’re the ones making the junior-high-school-science-class mistake: they’re taking a law of nature that says absolutely nothing about why we get fat and assuming it says all that needs to be said. This was a common error in the first half of the 20th century. It’s become ubiquitous since.

If the experts had ever been open to a little skeptical thinking from others or had they been appropriately skeptical themselves, this might never have happened. What’s been needed (and still is) was for someone (a reasonably smart 14-year-old would suffice) to ask the obvious questions and then insist on intelligent answers. Here’s how such a dialog might go:

Gary Taubes
The experts: Obesity is caused by over-eating, by consuming more calories than are expended. There’s no getting around the first law of thermodynamics.

Us: But all that law says is that if somebody gets fat, they have to consume more calories then they expend. So why do they do that?

The experts: Because they do.

Us: That’s not a good enough answer.

The experts: Well, maybe they can’t help themselves.

Us: Why can’t they help themselves?

The experts: Because they can’t.

Us: That’s not a good enough answer either.

The experts: Because the food industry makes them do it. There’s so much good food around and it’s so tasty, they can’t help but eat it.

Us: But obviously some of us can, because we don’t all get fat. Why is it only some people can’t help themselves?

The experts: Because they can’t.

Us: Try again.

The experts: Well, it’s complicated.

Us: What do you mean complicated? We thought it was easy. Just this eating-too-much, exercising-too-little, calories-in-calories-out, thermodynamics thing.

The experts: Okay, how about this? [Now quoting from an NIH report published in 2000.] “Obesity is a complex, multifactorial chronic disease that develops from an interaction of genotype and the environment. Our understanding of how and why obesity develops is incomplete, but involves the integration of social, behavioral, cultural, physiological, metabolic and genetic factors.”

Us: So what do all those have to do with eating too much and the laws of thermodynamics?

Experts: They contribute to making fat people overeat.

Us: How do they do that?

The experts: We don’t know. It’s complicated.

Us: Then maybe there’s another way to look at it. Maybe when we get fat it’s because those physiological, metabolic and genetic factors you mentioned are dysregulating our fat tissue, driving it to accumulate too much fat, and that’s why we eat so much and appear — to you anyway — to be kind of lazy. We’re compensating for the loss of calories into our fat.

The experts: Yeah, well, maybe. Your guess is as good as ours.

To read the full article and comments, click here.

Friday, December 3, 2010

WATCH "FAT HEAD" MOVIE IN ITS ENTIRETY RIGHT HERE!

UNEXPLAINED WEIGHT LOSS AND WEIGHT GAIN - ADAM KOSLOFF - WHYLOWCARBDIETSWORK.COM

Unexplained Weight Loss and Weight Gain: Mystery Weight Fluctuations and the Root Cause of Obesity

Unexplained weight loss and weight gain can shine light on the root cause of obesity. This essay will explain why.





Why do drugs, genetic abnormalities, medical conditions, pollution, and other factors cause weight changes?




According to conventional thinking, overeating and inactivity lead to weight gain, and diet and exercise lead to weight loss. Unexplained weight loss or gain, therefore, can only be understood in terms of appetite and/or metabolism. For instance, let's say someone gains weight while on an antidepressant. The presumption would be that the drug made her hungrier, driving her to eat excess calories. Thus, the weight gain.
The other hypothesis about what makes us fat says that "mystery" weight changes result when these X factors do something to the fat tissue itself. This then leads to the storage (or release) of fat. Perhaps a medication causes elevation of insulin levels, for instance. This would drive the storage of fat in the fat tissue, irrespective of changes to diet or exercise. In other words, mystery weight gain/loss has nothing to do with appetite or physical activity (or lack thereof). It has to do with what is going on inside the fat tissue itself.
So which theory makes more sense? Let's look at specific classes of medications, diseases and hormonal changes to see whether evidence from the real world can help us decide between these two hypotheses. Click on any link for details:
(To read the full article, click here.)

    I AM INTERVIEWED BY ADAM KOSLOFF OF WHYLOWCARBDIETSWORK.COM

    I was sure that I posted this on my blog back in July when it was posted on Adam's site, but I can't find it.  So, just in case you missed it (or I never posted it!), click here to go to the interview.

    Sunday, November 21, 2010

    MY CYBER CHAT WITH TOM NAUGHTON OF THE MOVIE "FAT HEAD"

    --> A couple of years ago, in response to watching the movie Super Size Me, I completely stopped eating at fast food restaurants and I've never looked back.  Tom Naughton's response to watching the movie was a little more extreme:  He set out to make his own documentary, exposing the obvious (to him) inaccuracies, inconsistencies and downright deceptions in that movie.

    The result was Fat Head, a factual and comic look at Super Size Me, written by, produced by and starring Tom Naughton, a stand up comedian, sit down writer and first time film-maker.  Not only does Tom rip Super Size Me to shreds, but he also shines a very informative spotlight on the whole low carb nutritional movement.  I just got my copy a week ago, after watching all the teasers for the same on youtube, and I loved it.  However, because of the way I am "wired", I wanted to know more about what Tom thought on a few low carb confusions of mine.

    I contacted Tom, asking if I could grill him a little, and he graciously told me to fire away.  In pretty short order, I got some very interesting and thought-provoking answers and observations from Tom, which helped me fine tune my own understanding of the way I have chosen to eat - high fat, moderate protein and low carb.

    Following are some Q & A from Tom and me. 

    Rebecca:  How is fat stored in the absence of insulin?  Most of the things I have read talk about how the over-release of insulin causes glucose to be stored as fat.  I have also read that protein that is not needed by the body is converted to glucose and stored as fat.  But what happens when a person eats overeats fat?  I asked that question of Gary Taubes in his recent interview with Jimmy Moore.  Gary answered by saying he has a problem with the word “overeat” and then he really didn’t answer the question.  He said that what is enough for one person might not be enough for another person.   

    So I am trying to rephrase the question so that it is clear:  Say a person is eating a certain amount of fat, protein and carbs (very low carb), and they are maintaining their weight on these amounts of each macronutrient.  Then, they suddenly increase their fat intake only by a large amount.  Do they begin to gain weight?  And if so, why?  If fat storage is driven by insulin, and fat does not provoke an insulin response, then how does that fat get stored?  

    I have heard some say that excess fat beyond what the body needs will just cause the body to raise the metabolism to burn it off.  I have heard some say that the body does not use the excess fat, but just excretes it.  I have heard some say that the excess fat is a “calorie bomb” and will be stored as fat, but they do not say by what biological mechanism this happens.  

    Dr. Atkins said that we can eat as much fat as we want, because it will not cause insulin to be produced and there will be no way for the fat to be stored.  But then he says that if we eat way too much, it will cause weight gain.  How? 

    Tom:  Unless you’re a type I diabetic, your body will always produce some insulin in response to food, and good thing too, or you’d waste away and die.  Carbohydrates generally provoke the greatest insulin response, but protein provokes an insulin response too.  I’m not aware of any experiments in which subjects lived on a diet of 100% fat, so I can’t say whether or not it’s possible to gain weight on fat alone, but we don’t eat fat alone; we eat fat with protein. 

    So my guess is that while you’re less likely to store calories as fat if you’re eating nothing but fat and protein, it’s still possible to gain weight if you eat enough, because the protein could provoke an insulin response sufficient to store some fat.   

    Rebecca:  What is the difference between “Calories In Calories Out” and “Creating a Calorie Deficit”?  I have heard many people talk about how 3500 calories equals a pound, and that to lose a pound per week, all you have to do is cut 500 calories from your daily food.  Or cut 250 calories per day and increase your activity by 250 calories each day for the same result. 

    Many low carb people will say that this theory is wrong, because a calorie is not a calorie is not a calorie.  The body will react to 100 calories of high glycemic index carbs differently than it will react to 100 calories of butter.  I know that I, personally, will maintain my weight on 1100 calories of high carb, low fat food, and I will also maintain my weight on 1800 calories of low carb, high fat food.  So I do believe that there is a “metabolic advantage” to eating low carb and high fat.   

    Also, many will say it is wrong because the body can adapt through homeostasis or thermogenesis, and keep the body from losing weight.  I heard this analogy recently:  It's kind of like the Borg on Star Trek, where a phaser weapon works against the alien Borg creatures once, but then they adapt, and soon the same phaser blast no longer does anything. 

    I started a thread on the Atkins Forum called “My Body is Not a Piggy Bank!  (Do Calories Matter?)” and I posted information that I got off of Adam Kosloff's website Why Low Carb Diets Work.  On that website, Adam attempts (and does a great job, I think) of crystallizing Gary Taubes’ ­Good Calories Bad Calories into an easily read and understood form.  Gary told Adam that he thought it was good. 

    If anyone can prove that homeostasis and/or thermogenesis are real,  it is me!  Without changing my activity, I have both gained and lost weight eating 1400 calories and 2000 calories and everything in between.  And all of this high fat, moderate protein and very low carb (never more than 40 total carbs and as low as 20 total carbs). 

    Tom:  To lose weight, you still have to create a calorie deficit. The idea behind low-carb is that the fat cells are open for business, so if you create the need to tap them, you can. Otherwise, simply eating less can encourage your body to slow your metabolism.   

    Calories In Calories Out assumes the number of calories you burn stays more or less constant. It ignores adaptive thermogenesis, the process by which your body can dramatically raise or lower your metabolism in response to the foods you eat, hormones, etc.  So according to the Calories In Calories out crowd, if you simply eat less, you’ll automatically lose weight matching the equation 3,500 calories = 1 pound of fat. However, if your fat cells aren’t open for business and you simply eat less, your body will respond to starvation at the cellular level by slowing your metabolism. That’s part of the reason so many diets fail, and also the reason some people who try to grit it out end up losing muscle instead of fat. Likewise, people who literally can’t seem to gain weight (my son, for one) have metabolisms that ramp up if they eat more. 

    If your fat cells are open for business, your body can make up for a fuel shortage by burning body fat, so it won’t experience cellular starvation and won’t slow your metabolism. But any way you slice it, you need to give your body a reason to tap those fat cells. I’ve seen people accuse the low-carb doctors of either denying the need for a calorie deficit or just now admitting to it, but Drs. Eades & Eades wrote about the need to create a calorie deficit way back with their first Protein Power book, which was published in 1997.  

    Research has shown that people who go on low-carb diets often end up eating less spontaneously. There’s a reason for that: once the fat cells are opened up, they supply a bigger share of your energy, so you don’t feel the need to eat as much. 

    Rebecca:  It seems like you are saying that Calories In Calories Out does not work if the fat cells are “closed” but it does­ work if the fat cells are “open”.  Or maybe it works when the fat cells are “open” but you make sure not to drop your calories too low and cause the body to “shut” the fat cells again.

    But doesn’t “creating a calorie deficit” also ignore adaptive thermogenesis?  If the fat cells are “open” does that turn off adaptive thermogenesis, or is it still possible? 

    If I am understanding this correctly, the difference between Calories In Calories Out and Creating a Calorie Deficit is really only a matter of semantics.  You could basically say that if you are eating high carb and low fat, Calories In Calories Out will not work.  But if you are eating low carb and high fat, Calories In Calories Out will work.  Isn’t Creating a Calorie Deficit really the same thing as Calories In Calories Out, provided, of course, that you are acknowledging that all calories are not created equal? 

    Just eating less and exercising more (Calories In Calories Out) will not make a person lose weight IF they are eating wrong.  But if they are eating right, eating less and exercising more will make them lose weight (Calorie Deficit).  Please help me to understand this better!   

    Tom:  Well, it’s a big, complex subject, but I’ll try to make it as clear as possible.  The Calories In  Calories Out crowd believes that 1) Body fat is passive and 2) All calories count the same.  Therefore, they make goofy statements such as “If you just cut 100 calories per day from your diet, you’ll lose 10 pounds per year.”

    They see the body as a bank which has a set number of daily expenses (your basal metabolism).  Every calorie consumed is a deposit, and every calorie burned through activity is a withdrawal.  So in their view, if your basal metabolism is 1500 calories and you burn an extra 500 calories through activity, eating more than 2000 calories will always cause weight gain, and eating fewer than 2000 calories will always cause weight loss. 

    We know this is poppycock because people like my wife and son weigh exactly the same year in and year out.  They can’t possibly be consuming EXACTLY the right number of calories every year.  My son easily consumes more than a million calories in a year.  According to simple calorie math, if he over-ate by a mere 7,000 calories, he’d gain two pounds – yet that never happens.  So unless he’s eating exactly the right number of calories every year – with 99.3% accuracy – his body must be adjusting his metabolism up and down in response to his diet to maintain his weight. 

    In fact, my son twice tried to gain weight by eating quite a bit more, but it didn’t work.  Other people have tried to starve themselves thin but couldn’t lose anything close to what the simple Calories In  Calories Out math says they should have lost. 

    That’s what Taubes explained in his book. It’s important to understand that despite what some of his critics have said, Taubes does not believe calories can magically disappear or that the laws of thermodynamics don’t apply to the human body.  (We’re talking about a guy with a degree in physics, after all.)  In any system, the body included, the inputs and outputs must match.  However, Taubes believes that 1) Body fat is an active driver of your metabolism, 2) the amount of fat your body wants to maintain is determined by hormones, and 3) the body responds to different sources of calories in different ways. 

    Body fat drives metabolism by providing you with a supply of fatty acids for fuel.  To keep your blood sugar level, your body needs to alternately store and retrieve fat – storing fat when blood sugar is high so the blood sugar will be consumed first and brought down to a safe level, retrieving fat as blood sugar drops so blood sugar isn’t over-consumed and pushed too low.  The amount of body fat you need for this system to work depends on how efficiently your fat cells can release fatty acids, which in turn is a function of several hormones.  Insulin, of course, is a prime mover in this system because high levels of insulin can slow down or block the release of fatty acids.  If your fat cells are slow to release fat, your body will work to make them bigger, because bigger fat cells can release more fatty acids, thus allowing you to keep your blood sugar stable. 

    So if hormones are telling your body to maintain a certain level of body fat, it will fight your efforts to gain or lose.  It fights by adjusting your metabolism up or down.  So you cut 100 calories per day from you diet, just like the experts suggest, and nothing happens.  Why?  Because if hormones are telling your body to remain fat, your body will respond by making adjustment to the calories it expends. 

    The Calories In  Calories Out crowd doesn’t account for those adjustments.  They also don’t account for the fact (despite plenty of clinical research) that the body tends to raise its metabolism in response to certain nutrients, such as proteins and medium-chain triglycerides – the fat found in coconut oil. 

    Here’s an analogy:  To the Calories In  Calories Out crowd, the gas I put in my car is calories in, the gas my car burns while idling is basal metabolism, and the gas my car burns while moving is calories expended through activity.  In their minds, this equation never changes.  But of course, we all know you can buy a car that gets 35 mpg, and three years later it’s only getting 28 mpg.  That doesn’t violate the laws of thermodynamics, and it doesn’t mean the energy in no longer matches the energy out.  It means something has changed inside the car’s system and it’s no longer using the energy in exactly the same way.   

    There is no getting around the fact that to burn away body fat, you need to create a need for your body to consume the fat – an energy deficit.  But merely cutting calories may not do the trick, because your body can adjust your metabolism down, thus reducing or eliminating the deficit.  That’s what Taubes was trying to explain:  The calories in can cause adjustments in the calories out.  If you don’t solve the hormonal issues first, shrinking your fat cells will simply produce a situation where your body can’t retrieve fatty acids quickly enough to feed your cells and keep your blood sugar level.  Then your body will fight like crazy to avoid shrinking the fat cells any more – again by slowing your metabolism. 

    So for the calorie deficit to work in the long term, it must be combined with a hormonal environment that allows your body to efficiently retrieve fatty acids from your fat cells.  That’s where keeping your insulin levels low comes in. 

    Rebecca:  If I am Creating a Calorie Deficit, why am I still 36% body fat, even though I eat high fat, moderate protein and very low carb? 

    Even though it makes sense, in theory, that I need to “burn” more calories than I take in, I have not been able to make that theory a reality in my body.  It seems that every time I either increase or decrease fat and protein (carbs always staying very low in all cases), there is no rhyme or reason to why I either stay the same weight, or lose weight or gain weight.  

    Remember my "Borg" analogy? Well, my body is the Borg, and it wants to weigh 143.4 pounds and Resistance is Futile!  When I decrease my intake of food in order to create a calorie deficit, it will sometimes give up a little fat, but then adapts and starts storing fat again, bringing me back to 143.4 pounds or more.  There was one time that I increased my food intake from 1600 calories to 2000 calories, and dropped several pounds in a week, but then my body adjusted my metabolism (I’m assuming) and all the weight came right back, with a little more just for good measure, to teach me a lesson. 

    In your Jimmy Moore interview,Tom, you said that people can look up exactly what you ate and how it caused you to lose a certain amount of weight.  If you were to look at my food diary, you would see no rhyme or reason to the weight I have lost, gained or maintained relative to the food I happened to be eating at the time or the amount of exercise I was getting or not getting.   

    I recently just gave up and ate 1800 calories per day for a few months without a change.  My weight stayed the same.  I then dropped down to 1400 calories, and did not lose weight.  I have been doing this now for two weeks, with no change in my weight.  But didn’t I create a calorie deficit?  And 1400 calories for a 5’3” woman is certainly not starving, I would think… 

    How can a person (me!) create a calorie deficit when thermogenesis is at work, it seems, to keep my body at a certain weight?   What is the likelihood that a person has no control over their weight, and no matter what they eat or how much they exercise, they will not lose weight? 

    Tom:  Okay, this is the answer nobody wants to hear, but here goes:  Short of starvation that would ruin your health, it may not be possible for you to be as thin as you would like to be.  As I explained above, your body needs to be able to store and retrieve fatty acids to keep your cells fed and your blood sugar level.  The amount of body fat required to do that job depends on how quickly and efficiently your fat cells release fatty acids.  Think of it this way:  if you’ve got weak batteries, you need more of them to produce the same charge.  So unless you can make your fat cells more efficient, your body is going to fight you tooth and nail to maintain your current level of body fat – because it NEEDS that body fat to avoid cellular starvation between meals, especially when you’re sleeping. 

    You may be able to make your fat cells more efficient through changes in hormones – thyroid recovery, adrenal recovery, insulin sensitivity recovery, etc. – but if you’ve suffered irreversible damage to any of those, there’s a limit to how much body fat you can or should lose. 

    I once managed to semi-starve myself down to 165 pounds, but the love handles and bit of belly fat in the front still didn’t go away.  I started burning up my own muscles instead.  My arms, legs and chest got skinnier, the belly didn’t.  At some point, my body refused to sacrifice the body fat it needed.  I just didn’t realize at the time that it did, in fact, need the fat.   

    So I can only suggest looking into possible fixes for hormone problems, keeping your carbs low (which you apparently already do), and engaging in hard exercise to improve your insulin sensitivity a bit.  Beyond that, I believe the smartest thing to do is to accept that what matters is health, not body size.  As Dr. Mary Vernon said in a lecture I attended, “From a health standpoint, I don’t care how fat you are.  I care about what you’re burning for fuel.” 

    Rebecca:  What do you think of the BodyBugg?  I have a friend who uses one, and he says it accurately tells him how many calories he is burning off each day so that he can create a 20% calorie deficit and lose weight consistently.  He eats high fat, moderate protein and low carb.  I feel that if I got one (out of desperation!), it would tell me that I am burning calories, but I still would not lose weight. 

    Tom:  Never seen one.  Since the body will adjust your metabolism to keep you fat if you don’t solve the hormonal issues first, I don’t see the point of counting every calorie. 

    Rebecca:  What other processes are at work in the body to store fat due to hormonal imbalances other than insulin? 

    Estrogen dominance, low progesterone, low testosterone, low thyroid, high cortisol and low melatonin will all cause weight gain.  Why?  (By the way, I have all of these, and having my hormones balanced with natural, bio-identical hormone replacement has not helped me lose weight.)  Do people with these imbalances gain weight because the imbalances cause excess insulin to be produced?  And if that is so, and a person is eating very low carb, what the heck is the insulin driving into the fat cells?  Fat and protein? 

    Tom:  I don’t believe they all work directly through raising insulin.  From what I’ve read, they all have an effect on how efficiently your body can release fatty acids for fuel.  Testosterone, for example, aids in lipolysis – the release and burning of fatty acids. Insulin, however, can block the actions of hormones that aid in lipolysis.  If you can’t release fatty acids quickly, your body doesn’t want to give up the body fat it needs.  

    Rebecca:  It's disappointing to me that I am actually a success story in the new Atkins book, A New Atkins for a New You.   

    Tom:  I take it you don’t feel successful at the moment?

    Rebecca:  The answer to that is resounding NO!  I have done everything right.  I have exercised, I have lifted weights, I have eaten low carb, I have had my hormones naturally balanced with bio-identical hormone replacement.  I am one of the top three contributors on the Atkins Community Forum, where some of my articles are used in the forum “stickies” so that newcomers will see them.  I am profiled in The New Atkins For a New You.  I was interviewed by Jimmy Moore for his podcast this past September.  I have this health and nutrition blog. 

    And sometimes I feel like a hypocrite.  I spend all my time telling everyone I know that low carb is the way that human beings were designed to eat, but eating this way is not causing me to lose more than just a few initial pounds of fat.  I started out at 46% body fat and now I am 36% or so, and I am stuck.  I did get down to around 33% over a year ago, but it has steadily been going back up since then.  

    Tom:  I hear you.  I’d love to have arms with veins that pop and six-pack abs, like my son.  But it’ll never happen.  I stopped a life-long weight gain and reversed it to a significant degree, but I know I damaged my metabolism as a young man, and it will apparently only recover so far.  I have to focus on the fact that at age 52, I’m stronger than when I was at 25, I can walk for miles in hilly terrain without getting fatigued, I kick my wife’s behind in racquetball even though she’s 14 years younger, my blood pressure is low, my triglycerides are low, my HDL is high, and I’m the only one of my friends in my age bracket who isn’t taking some awful prescription drug. 

    You are NOT a hypocrite, Rebecca.  You cannot compare yourself to people whose bodies are happy to be thin.  (If I compared myself to my wife and son all the time, I’d go bonkers.)  You can only compare who you are now with who you would’ve been if you hadn’t taken steps to improve your health.  So I don’t compare myself to my son.  The only person I compare myself to is the one I used to be.

    Rebecca:  Can fat tissue be damaged beyond repair?  I have heard some say that the basic problem is that fat tissue function is damaged.  Do you think that there is a possibility that, in some cases, adipose tissue has been damaged beyond total repair?  Is there a chance, when there are no other possible issues at play, that a person cannot be capable of creating a calorie deficit in order to lose weight?  Gary Taubes said something to that effect in his recent interview with Jimmy Moore.  He said that, in some people, there will be excess fat that will not go away, no matter how well they eat. 

    Tom:  I think Gary’s right, for the reasons I have already talked about here.

    Rebecca:  So you think that a person can be fat and healthy?  In your Jimmy Moore interview, you talked about the difference between being overweight and being unhealthy, using members of your family and yourself as examples:  You are a little overweight and yet you have normal blood sugar, and others in your family are normal weight and yet have Type 2 Diabetes.  Do you believe that being overweight causes disease, or that disease ­leads to overweight?  My father’s doctor has always told him to avoid gaining weight in order to avoid Type 2 Diabetes.  His mother, my grandmother, was overweight most of her life and developed Type 2 Diabetes in her 60s.   

    I think of myself, and realize that I have low triglycerides, good HDL and slightly high LDL, but normal blood sugar, and low inflammation markers, like C-Reactive Protein and Homocysteine,  and yet I am 36% body fat.  If I stay this fat, will that lead to developing Diabetes and Coronary Heart Disease, or can I stay fat and remain healthy, as long as I eat right (low carb) and exercise?  Should I only care about my health, and not try to lose weight, and if I do that, will this fat, healthy body of mine lead me down the road to ill health? 

    Tom:  My father-in-law is lean, athletic, and a type 2 diabetic.  My maternal grandmother is on the skinny side, but also became a type 2 diabetic.  Clearly, body fat is not the cause of type 2 diabetes, or we wouldn’t see lean type 2 diabetics.  It’s far more likely that many people eat diets that both make them fat and create insulin resistance at the same time.  Others can eat the same diet and become insulin resistant without becoming fat.  

    Having said that, there is some evidence that the fat that accumulates in your liver may accelerate insulin resistance through the production of inflammatory cytokines. 

    Rebecca:  So basically, does staying slim keep you healthy, or does staying healthy keep you slim (chicken/egg)?   

    Tom:  Proper diet can aid in keeping you both slim and healthy.  Losing weight may assist in keeping you healthy by removing inflammation-producing visceral fat from your liver. 

    Rebecca:  Tom, why do people get fat?  I know that Gary has a book coming out about this, but I am interested to hear your take on it.  I have heard it said (maybe by Gary) that we don’t get fat because we sit on the couch and eat too much – we sit on the couch and eat too much because we are fat.   

    In other words, we aren’t fat because we eat too much and don’t get enough exercise. We’re not just lazy gluttons.  It’s not just Calories In Calories Out.  There is actually something wrong in the adipose tissue that is driving us to eat (specifically carbs) and causing us to stay inactive and keeping our metabolism slow. 

    I know that I did not change the way I was eating or exercising, but when I hit thirty, I just started gaining weight.  I now blame hormonal imbalances, of which I’m sure insulin was one.  I was also eating a high carb and high fat diet, except when I was trying to lose weight, and then it was high carb and low fat. 

    What do you think? 

    Tom:  Metabolic derangement happens first.  The result is weight gain and lethargy.  When Dr. Robert Lustig treated kids for cancer, they nearly all become fat and lazy soon after.  Realizing something hormonal must’ve happened, he tested them and ended up giving them a drug to suppress excess insulin production.  Bingo; they lost weight and became active again, without anyone harping on them to eat less and exercise more. 

    Rebecca:  I've been doing a lot of reading lately about cholesterol, because my husband's is high.  Based on what I've been learning, I am beginning to wonder:  Does serum cholesterol even matter? 

    Since starting low carb 20 months ago, my cholesterol has gone from around 200 to around 220.  I’m sure it would not surprise you to know that my doctor wants me on statins.  I refused.  I did agree to start supplementing with red rice yeast, but now I am wondering if I should even be trying to lower my LDL.  I have been reading a lot of things in books and on the internet that say that as long as triglycerides are low, and inflammation is low, you could have a high LDL and it doesn't matter.  Some doctors believe that, ten years into the future, cholesterol will not even be considered a marker for heart disease.  What do you think? 

    Tom:  Don’t try to lower your LDL.  High LDL protects you against infections and cancer.  It’s only a problem if you’re producing small, dense LDL, which is unlikely if you have low triglycerides and high HDL.  Also, LDL isn’t usually measured; it’s calculated.  If you have low triglycerides (below 100), that calculation will nearly always overestimate how much LDL you have.  Your doctor probably doesn’t know this, but there’s never, ever been an association shown between high cholesterol and heart disease in women.  In senior citizens, those with high cholesterol have the longest average lifespans, primarily because they have a lower rate of cancer.

    Rebecca:  Thanks, Tom!  I really appreciate you taking the time to answer my questions!   I know that we all hope that low carb wisdom will prevail - and hopefully in our lifetimes!

    To visit Tom Naughton's blog, click here.