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Body Composition Scale – Recommendations Regarding Body Fat Percentages

Recommendations Some body fat percentage levels are more culturally valued than others, and some are related to better health or improved athletic performance.

Actual levels of body fat are dependent on gender and age.

Different authorities have developed different recommendations for ideal body fat percentages, such as these from the The American Council on Exercise:

Body Composition Scale

Body Composition Scale

Note The Values In The Body Composition Scale Chart

Note that the essential fat values in the chart above are lower than the recommended minimum body fat percentage levels.

A small amount of storage fat is required to be available as fuel for the body in time of need.

Ideal Category For Optimal Body Composition Health Unclear

It is unclear whether falling in a particular category of these body fat percentages is better for one’s health than any other, but there seem to be enhancements in athletic performance as one nears the ideal body fat percentage range for one’s particular sport.

The leanest athletes typically compete at levels of about 5–8% for men or 10–15% for women.

Bodybuilders will often compete at ranges even lower than these levels.

Certified personal trainers will suggest to male bodybuilders that they should aim for a body fat percentage between 2–4% by contest time.

How To Reach Optimal Body Composition Scale

Getting to this level usually requires a carefully planned and implemented exercise program, specific and carefully monitored variations in fluid consumption, energy intake and macronutrient ratios, sodium and potassium, and sometimes also use of ointments and alcohol.

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Welcome to Body Composition Scale.

Welcome to BodyCompositionScale.net! Valhalla Scientific is the technology leader in professional Body Composition Scales. Our Body Composition Analyzer Scales or Body Fat Scales constitute a set of digital scales which are scientifically proven to be the equivalent of hydrostatic weighing scales for the accurate determination of Lean Body Mass, Body Mass Index or Fat Free Mass while providing Percent Body Fat Measurements using scientifically proven bio-impedance technology or bio-resistance technology.

A person’s total body fat percentage is the total weight of the person’s fat divided by the person’s weight. The resulting number reflects both essential fat and storage fat.

  • Essential fat is that amount of fat necessary for maintenance of life and reproductive functions. The percentage for women is greater than that for men, due to the demands of childbearing and other hormonal functions. Essential fat is 2–5% in men, and 10–13% in women.
  • Storage fat consists of fat accumulation in adipose tissue, part of which protects internal organs in the chest and abdomen. The minimum recommended total body fat percentage exceeds the essential fat percentage value reported above. A number of online tools are available for calculating estimated body fat percentage.

Arguably, body fat percentage is the superior gauge of an individual’s fitness level, as it is the only body measurement which directly calculates the particular individual’s body composition without regard to the individual’s height or weight. The widely-used body mass index (BMI), on the other hand, simply makes blanket assumptions as to what every individual of a certain height should ideally weigh, regardless of the body composition which makes up that weight. The BMI gives particularly inaccurate information with regard to individuals with above-average lean muscle mass, classifying such individuals as “overweight” or “obese” despite the fact that their body fat percentage would indicate they are in excellent physical condition.

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Body Composition ScaleBody Composition, Body Fat & Body Weight

Learn why body weight and body fat are not always an indication of health

By Elizabeth Quinn, About.com

Body composition is the term used to describe the different components that, when taken together, make up a person’s body weight. The human body is composed of a variety of different tissue types including lean tissues (muscle, bone, and organs) that are metabolically active, and fat (adipose) tissue that is not.

Body Weight Measurements

Standard body weight scales provide a measure of total weight, but don’t determine the lean-to-fat ratio of that weight. Standing on most scales can tell you only if you weigh more than the average person, but not if that weight is fat or muscle. Based only on scale weight, a 250-pound athlete with 8% body fat may be considered “overweight” by a typical weight chart. Such charts are not a good indication of ideal body weight for general health or for athletic performance.

Body Composition | Body Fat Measurement

There are many methods of assessing a person’s fat and lean mass. The most common methods include the following.

Underwater Weighing – Hydrostatic Weighing

One method of body composition analysis in which a person is weighed while submerged in a large tank of water is called underwater or hydrostatic weighing This method of determining body composition relies on Archimedes’ Principle of displacement which states:

  1. The density of fat mass and fat-free mass are constant
  2. Lean tissue is more dense than water
  3. Fat tissue is less dense than water.
  4. Therefore person with more body fat will weigh less underwater and be more buoyant.

Underwater weighing has been considered the gold standard for body composition assessment, however new, more sophisticated methods may make underwater weighing obsolete in the future.

Skinfold Thickness Measurements

Because underwater weighting it is complicated and cumbersome and requires special equipment, most exercise physiologists use simple skinfold measurements to determine body fat percent. The American College of Sports Medicine says that when performed by a trained, skilled, tester, they are up to 98% accurate.

Bioelectrical Impedance

Bioelectrical Impedance is another method of assessing body fat percentage. There are a variety of body composition and body fat analyzers and scales available for home use that provide more than just total weight measurements. These devices determine total weight, the percent and amount of body fat, muscle mass, water, and even bone mass. While the readings can be affected by hydration levels, food intake, skin temperature, and other factors, if you follow the directions and take the reading under similar conditions, you will obtain the best results.

BMI – Body Mass Index

BMI or Body Mass Index, is another method of estimating a person’s body fat percentage based upon simple weight and height measurements. While the BMI calculation is an indirect measurement, it has been found to be a fairly reliable indicator of body fat measures in most people. Although some studies still question the accuracy of the BMI method of body fat measurement, especially for athletes.

Ideal Body Weight and Body Fat Percent

The ideal weight and fat-lean ratio varies considerably for men and women and by age, but the minimum percent of body fat considered safe for good health is 5 percent for males and 12% for females. The average adult body fat is closer to 15 to 18% for men and 22 to 25% for women.

Athletes tend to be at low end of this scale due to their increased lean weight (muscle mass). While low levels of body fat seem to be related to improved performance, body composition alone is not a great predictor of sports success. A linebacker needs to have enough body mass (lean and fat weight) to generate high forces and avoid injury. Body fat among elite athletes vary largely by sport. There is little evidence of any benefit when men drop under 8% and women drop under 14 percent body fat.

How Low Is Too Low?

While the average body fat percent in the United States and Europe is increasing, extremely low body fat percent is also a health problem. The female athlete triad highlights the problem. Women athletes who lose too much fat risk injury, decreased performance and health issues.

The female athlete triad refers specifically to three related health problems often found in women athletes:

  • Eating disorders and low energy availability.
  • Amenorrhea and menstrual disorders.
  • Decreased bone mass and increased risk of stress fractures and osteoporosis.

This attempt to reduce body fat by extreme measures not only leads to decreased exercise performance, but can lead to severe health complications. Nutrient deficiencies and fluid/electrolyte imbalance from low food intake can lead to increased risk of fractures, illness, loss of reproductive function and serious medical conditions such as dehydration, and starvation. The medical complications of this triad involve almost every body function and include the cardiovascular, endocrine, reproductive, skeletal, gastrointestinal, renal, and central nervous systems.

Read the updated American College of Sports Medicine Position Stand on the Female Athlete Triad.

How Much Body Fat Is Too Much?

Just as too little body fat can cause physiological complications, too much body fat is also harmful. For men over 25% and women over 32% fat there is a dramatic correlation with illness and disease.

Isn’t Body Composition Genetic?

Some aspects of your body composition are genetic (where you store fat), but most fat increase is related to lifestyle.

Can I Change My Body Composition?

Yes. To increase or decrease your percent of body fat you need to create the right balance between the calories in and calories out. The best way to do this is to decrease daily calories by about 500 and increase your exercise. Aerobic exercise along with strength training is ideal. If you are beginning a new exercise program, you are advised to first consult your physician.

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Body Composition Scale – Measurement Techniques Part 5 (Types Of Anthropometric Measurement)

Skinfold methods

The skinfold estimation methods are based on a skinfold test, whereby a pinch of skin is precisely measured by calipers at several standardized points on the body to determine the subcutaneous fat layer thickness. These measurements are converted to an estimated body fat percentage by an equation. Some formulas require as few as three measurements, others as many as seven.

The accuracy of these estimates is more dependent on a person’s unique body fat distribution than on the number of sites measured. As well, it is of utmost importance to test in a precise location with a fixed pressure. Although it may not give an accurate reading of real body fat percentage, it is a reliable measure of body composition change over a period of time, provided the test is carried out by the same person with the same technique.

Skinfold-based body fat estimation is sensitive to the type of caliper used, and technique. This method also only measures one type of fat: subcutaneous adipose tissue (fat under the skin). Two individuals might have nearly identical measurements at all of the skin fold sites, yet differ greatly in their body fat levels due to differences in other body fat deposits such as visceral adipose tissue: fat in the abdominal cavity.

Some models partially address this problem by including age as a variable in the statistics and the resulting formula. Older individuals are found to have a lower body density for the same skinfold measurements, which is assumed to signify a higher body fat percentage. However, older, highly athletic individuals might not fit this assumption, causing the formulas to underestimate their body density.

Height and circumference methods

There also exist formulas for estimating body fat percentage from an individual’s weight and girth measurements. For example, the U.S. Navy Circumference method compares abdomen or waist and hips measurements to neck measurement and height and other sites claim to estimate one’s body fat percentage by a conversion from the body mass index. In the Navy the method is known as the “rope and choke.”

The U.S. Marine Corps and U.S. Army also rely on the Height and Circumference method. For males, they measure the neck and waist just above the navel. Females are measured around the hips, waist, and neck. These measurements are compared to a height/weight chart with age factored in as well. This method is used because it is a cheap and convenient way to implement a body fat test throughout the entire Department of Defense.

Due to different body compositions, those with larger necks may artificially generate lower body fat percentage calculations than those with smaller necks.

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Body Composition Scale – Anthropometric methods

There exist various anthropometric methods for estimating body fat. The term anthropometric refers to measurements made of various parameters of the human body, such as circumferences of various body parts or thicknesses of skinfolds. An excellent explanation of these methods is available in a PDF from the Academy For Educational Development.

Anthropometric Body Composition Methods Basis

Most of these methods are based on a statistical model. Some measurements are selected, and are applied to a population sample. For each individual in the sample, the method’s measurements are recorded, and that individual’s body density is also recorded, being determined by, for instance, under-water weighing, in combination with a multi-compartment body density model. From this data, a formula relating the body measurements to density is developed.

Anthropometric Body Composition Scales Measure Body Density Not Fat Percentage

Because most anthropomorphic formulas such as the Durnin-Womersley skinfold method, the Jackson-Pollock skinfold method, and the US Navy circumference method, actually estimate body density, not body fat percentage, the body fat percentage is obtained by applying a second formula, such as the Siri or Brozek described in the above section on density. Consequently, the body fat percentage calculated from skin folds or other anthropometric methods carries the cumulative error from the application of two separate statistical models.

These methods are therefore inferior to a direct measurement of body density and the application of just one formula to estimate body fat percentage. One way to regard these methods is that they trade accuracy for convenience, since it is much more convenient to take a few body measurements than to submerge individuals in water tanks.

Sampling Issues Affect Accuracy of Anthropometric Body Fat Percentage Measurements

The chief problem with all statistically derived formulas is that in order to be widely applicable, they must be based on a broad sample of individuals. Yet, that breadth makes them inherently inaccurate. The ideal statistical estimation method for an individual is based on a sample of similar individuals.

For instance, a skinfold based body density formula developed from a sample of male collegiate rowers is likely to be much more accurate for estimating the body density of a male collegiate rower than a method developed using a sample of the general population, because the sample is narrowed down by age, sex, physical fitness level, type of sport, and lifestyle factors. On the other hand, such a formula is unsuitable for general use.

 

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