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Body composition and osteoporosis in elderly women.

OBJECTIVES: To study body composition in elderly osteoporotic women to determine the relationship of body weight, body fat mass and lean mass to bone mineral density (BMD), and to investigate the association between one-leg balance, osteoporosis and sarcopenia. DESIGN AND SETTING: A cross-sectional study of a community-based population in Toulouse, France. METHODS: For each participant, whole body composition and BMD were estimated using a dual-energy x-ray absorptiometry scanner. We investigated balance using a one-leg balance test. PARTICIPANTS: 129 healthy women aged 75-89 years, volunteers, ambulatory and living at home. RESULTS: Total fat mass and appendicular skeletal muscle mass (ASM) were significantly lower in osteoporotic women than in the age- and sex-matched non-osteoporotic controls [18.7 +/- 4.6 vs. 22.2 +/- 6.6 for total fat mass (p < 0.01); 13.1 +/- 1.6 vs. 13.8 +/- 2.2 for ASM (p < 0. 05)]. We did not find a positive association between osteoporosis and sarcopenia (OR = 0.75, CI 0.3-1.84), osteoporosis and one-leg balance (OR = 1.27, CI 0.51-3.17), or sarcopenia and one-leg balance (OR = 1.31, CI 0.52-3.36). There were significant positive correlations between BMD in all areas and body measurements (weight, fat mass, lean tissue mass), but fat mass accounted for more of the variance in total body and femoral BMD than lean tissue mass. Total fat mass alone, in a multivariate model, was correlated with whole body BMD, whereas femoral BMD was associated with both fat mass and lean tissue mass. CONCLUSION: Higher values of fat mass and lean tissue mass may have a protective effect on femoral bone density. Sarcopenia and osteoporosis are not necessarily linked with balance.

Absorptiometry, Photon↗

Bioelectric impedance methods for the estimation of body composition.

The present use of bioelectric impedance is based upon the greater electrolyte content and conductivity of fat-free mass (FFM). The limitation of the whole body impedance approach may be the use of S2/R as an index of the conductive volume of the body. The use of body lengths that closely resemble the actual length of the conductor rather than stature can improve predictions of FFM. Theoretically, the specific resistivity approach to bioelectric impedance also provides a means of circumventing this problem. Another alternative is the estimation of whole body composition or the composition of body segments from measurements of the lengths and resistances of the segments and the use of the phase angle of the whole body and or body segments. Possible alternative methods for the use of bioelectric impedance would be the measurement of the composition of body segments, the determination of specific resistivities so that estimates of FFM can be calculated without the need for regression equations and the determination of the use of different current frequencies in measuring body composition with bioelectric impedance.

Body Composition↗

Body composition assessment in type 1 diabetes mellitus patients over 15 years old.

BACKGROUND: The aim of the present study was to assess the anthropometric characteristics and body composition in type 1 diabetic patients and compare the results with a randomly selected control population. MATERIAL AND METHODS: We studied 75 type 1 diabetic patients, 43 male and 32 female, recruited from consecutive diagnosed type 1 diabetic patients attending the Endocrine Unit and treated with a intensive insulin regimen, and 93 control subjects, 44 males and 49 females representative of the census of this city. We performed a dietary recall in patients and determined anthropometric characteristics, both in patients and controls, body weight, height, body-mass index, waist-hip ratio and body composition parameters: total body water, free-fat mass, body free-fat mass, fat mass and body fat by bioelectrical impedance analyser. RESULTS: In diabetic male patients, we observed lower waist-hip ratio than in controls, 0.84 +/- 0.06 vs. 0.88 +/- 0.07, p = 0.021, higher free-fat mass in female diabetic patients, 48.5 +/- 5.6 vs. 45.6 +/- 5.9 kg, p = 0.03, lower fat mass in male diabetic patients, 9.5 +/- 6.9 vs. 14.6 +/- 8.5 kg, p = 0.003. We did not find any correlation among the parameters of body composition and dietary macronutrient intake in patients. CONCLUSIONS: The present study exposes the differences in anthropometric characteristics and body composition in type 1 diabetes mellitus, especially lower waist-hip ratio in male, higher free-fat mass in female and lower fat mass in male.

Adult↗

Effects on growth and body composition of growth hormone treatment in children with juvenile idiopathic arthritis requiring steroid therapy.

OBJECTIVE: Decreased growth velocity and abnormal body composition including severe osteoporosis are common in glucocorticoid-treated patients with juvenile idiopathic arthritis (JIA). We evaluated the effects of recombinant human growth hormone (GH) given for 3 years on growth velocity, height standard deviation score (SDS), and body composition, together with potential adverse effects on glucose tolerance. METHODS: Thirteen patients received GH (0.46 mg/kg/week) for 3 years. Body composition was assessed by dual-energy x-ray absorptiometry and glucose tolerance by annual oral glucose tolerance tests. RESULTS: Median growth velocity increased from 2.1 to 6.0 cm/year (p = 0.002) in the first year and remained higher than baseline in the second year of treatment. Height SDS did not change significantly (-4.6 SDS at baseline vs -4.3 SDS at study completion), but the growth response varied markedly across patients. Compared with baseline, lean mass increased by 33%, fat mass remained stable, and lumbar bone mineral density increased by 36.6%. Transient glucose intolerance developed in 6 patients, but glycosylated hemoglobin concentrations did not change significantly and diabetes mellitus did not occur. CONCLUSION: Treatment with GH restored linear growth without inducing catch-up growth, significantly improved body composition, and prevented further bone loss. Prolonged followup is needed to assess the benefits of GH and longterm consequences of hyperinsulinism.

Adolescent↗

Body composition in elderly people: effect of criterion estimates on predictive equations.

The purposes of this study were to determine whether there are significant differences between two- and four-compartment model estimates of body composition, whether these differences are associated with aqueous and mineral fractions of the fat-free mass (FFM); and whether the differences are retained in equations for predicting body composition from anthropometry and bioelectric resistance. Body composition was estimated in 98 men and women aged 65-94 y by using a four-compartment model based on hydrodensitometry, 3H2O dilution, and dual-photon absorptiometry. These estimates were significantly different from those obtained by using Siri's two-compartment model. The differences were associated significantly (P less than 0.0001) with variation in the aqueous fraction of FFM. Equations for predicting body composition from anthropometry and resistance, when calibrated against two-compartment model estimates, retained these systematic errors. Equations predicting body composition in elderly people should be calibrated against estimates from multicompartment models that consider variability in FFM composition.

Absorptiometry, Photon↗

Comparison in man of total body electrical conductivity and lean body mass derived from body density: validation of a new body composition method.

This article reports a study in which total body electrical conductivity (TOBEC) measurements and lean body mass (LBM) estimated from hydrostatic weighing in human subjects were compared. The TOBEC method provides a new approach to assessment of human body composition that is based on the principle that the electrical conductivity of lean tissue is far greater than that of fat. In a sample of 32 men and women varying widely in age (20 to 53 years), body weight (45 to 155 kg), and adiposity (9.5 to 53.0% body fat), the TOBEC measurement was found to be extremely reliable (r = 0.999) and to correlate highly with hydrostatically estimated LBM (r = 0.903, P less than 0.0001). When the TOBEC scores were transformed to provide a single variable; namely, the subject's height times the square root of the TOBEC score, a higher correlation with LBM was obtained (r = 0.943). Taking gender into account further enhanced the prediction of LBM from TOBEC (r = 0.951). These observations strongly reinforce the results of a previous investigation in which high correlations were found between TOBEC and both total body potassium and total body water. Accordingly, this new method promises to provide a useful technique for the evaluation of body composition that is at once simple, rapid, objective, and noninvasive.

Adult↗

Total enteral nutrition support improves body composition of patients with active Crohn's disease.

BACKGROUND: Previous studies using indirect calorimetry in Crohn's disease have suggested that with weight loss there is a proportionally greater decrease in body fat along with a spring of lean mass. This study analyzed body composition (compared with that of controls) by direct methods in a group of 30 patients with active Crohn's disease and further evaluated the effects of nutrition support on body composition. METHODS: Total body protein was assessed by neutron activation, fat was assessed by dual energy x-ray absorptiometry, water was assessed by bioelectric impedance analysis, and potassium was assessed by gamma-ray technique. These measurements were repeated in patients with Crohn's disease after 3 weeks of enteral nutrition by feeding tube that provided 35 nonprotein kcal/kg of ideal body weight. RESULTS: Compared with age- and sex-matched controls, patients had lost (on average) 11.3 kg (16%) of body weight (p < .0005), including 5.1 kg (30%) of fat (p < .0005), 2.2 kg (19%) of protein (p < .025), 3.7 kg (10%) of water (p = NS), and 24.9 g (21%) of total body potassium (p < .01). After enteral feeding, body weight increased by 1.9 +/- 0.3 kg (p < .0005). Weight gain was accompanied by an increase in body protein (0.3 +/- 0.1 kg), fat (0.3 +/- 0.1 kg), and water (1.1 +/- 0.4 kg) (all p < .025), and by a nonsignificant increase in total body potassium. The weight gain of approximately 2 kg consisted of 65% water, 18% fat, and 18% protein, thus comprising a normal proportion of body composition. CONCLUSIONS: Reduced body weight in patients with Crohn's disease compared with that in controls was due to less fat tissue. With modest nutritional repletion, proportionate gains in all body compartments are possible.

Absorptiometry, Photon↗

Effects of modest testosterone supplementation and exercise for 12 weeks on body composition and quality of life in elderly men.

OBJECTIVE: One of the factors that may promote deterioration in quality of life and body composition in elderly men is the relative decline in serum testosterone levels with aging. In this study, we assessed the effects of modest doses of testosterone and a home-based strengthening program on quality of life and body composition in elderly men with relative testosterone insufficiency. DESIGN: Double-blind, placebo-controlled randomized study (testosterone), and additional randomization to a resistance exercise program or no additional exercise for 12 weeks in men between ages of 65 and 85 years with relative testosterone insufficiency. METHODS: Seventy sedentary, community dwelling men were randomized to a 5 mg testoderm transdermal system applied daily vs placebo system, and additionally randomized to a home-based resistance exercise program. Subjects were randomized to Group 1 (testosterone plus exercise), Group 2 (testosterone plus no exercise), Group 3 (placebo plus exercise), and Group 4 (placebo plus no exercise). Endpoints included quality of life (assessed by the short form-36 questionnaire) and body composition (measured by dual x-ray absorptiometry scan). RESULTS: Serum testosterone increased by a mean of 10.0 +/- 1.9, 6.6 +/- 1.6, 0.52 +/- 0.6, and 0.5 +/- 0.6 nmol/l in Groups 1, 2, 3, and 4 respectively. There was a significant interaction of testosterone and exercise on quality of life in the domains of physical functioning (P = 0.03), role physical (P = 0.01), general health (P = 0.049), and social functioning (P = 0.04). There were no effects of testosterone or exercise on quality of life alone, nor in body composition parameters. CONCLUSIONS: Modest testosterone supplementation to elderly men with relative testosterone insufficiency improved quality of life when accompanied by an exercise program. The combination of testosterone and exercise may be an important strategy in the elderly, though further studies are necessary to determine the long-term impact on body composition and function and for analysis of risk/benefit ratios as well.

Administration, Cutaneous↗

Body composition and blood pressure in children based on age, race, and sex.

We evaluated 675 nine- and twelve-year-old children for body composition and circulatory differences based on age, race, and sex. The specific variables measured included height, weight, triceps and subscapula skinfolds, body mass index, percentage fat, fat-free weight, and systolic, diastolic, and mean arterial blood pressures. A 2 x 2 x 2 factorial multiple analysis of variance (MANOVA) test of significance showed body composition and blood pressure differences (P < .01) for race, age, and sex. The univariate test of the specific variables within the factors showed that black children had higher fat-free weights and lower fat levels but higher blood pressure values (P < .05) than white children. Boys had lower fat levels than girls, and the older children had higher values on the body composition variables but not on blood pressure. Zero order correlations between body composition and blood pressure ranged from 0.14 to 0.55; systolic blood pressure and body weight shared the highest correlation. These data show that, although black children have less body fat than white children, they are heavier and have higher blood pressure. We hypothesize that some aspect of fat-free body weight may contribute to hypertension in black individuals.

Age Factors↗

Performance-based physical functioning in African-American and Caucasian women at midlife: considering body composition, quadriceps strength, and knee osteoarthritis.

In 2000, body composition, x-ray-defined knee osteoarthritis, and self-reported knee pain information from a cross-sectional, community-based study of 211 African-American and 669 Caucasian women in southeast Michigan (mean age, 47 years) was related to performance-based physical functioning measures to characterize development of functional limitations. Body composition was assessed with bioelectrical impedance. Functioning measures were gait assessment, timed walk, timed stair climb with and without videography, and isometric quadriceps strength. Knee osteoarthritis was determined by Kellgren-Lawrence score from radiography, whereas knee pain was self-reported. Almost 31% of mid-aged women walked at functionally inadequate speeds, and over 12% walked at speeds considered typical of frailty in older women. Ten percent of women had skeletal muscle mass levels less than a proposed cutpoint for increased physical disability risk in older adults. Gait measures correlates included increasing age, increasing fat mass (in kilograms), knee joint pain, and reduced quadriceps strength. Stair climbing correlates included skeletal muscle mass (in kilograms) and its change, painful knee osteoarthritis, and reduced quadriceps strength. Race differences in walking measures and stair climbing time diminished when the authors accounted for other factors. Compromised physical functioning began earlier than expected, with indications that approximately 12-31% of women might benefit from interventions to forestall future decline.

Adult↗

Body composition in children with celiac disease and the effects of a gluten-free diet: a prospective case-control study.

BACKGROUND: Celiac disease is the most common cause of malnutrition in children of Western countries. OBJECTIVE: The objective was to measure body composition in children at the time celiac disease was diagnosed and after consumption of a gluten-free diet (GFD). DESIGN: We assessed body composition by dual-energy X-ray absorptiometry in 29 children and adolescents with a mean (+/-SD) age of 9.5 +/- 3.4 y at the time celiac disease was diagnosed and in a subset of 20 patients after 1.2 +/- 0.2 y of a GFD. We also studied 23 patients aged 21.2 +/- 4.6 y who consumed a GFD for 10.6 +/- 4.5 y. Each patient was matched with a healthy control subject of the same age and sex. RESULTS: Untreated patients weighed less than control subjects (P = 0.04). Fat mass and bone mineral content were lower in the patients than in the control subjects (P < 0.01), as was lean mass of the limbs (P = 0.0013). After approximately 1 y of the GFD, there were no significant differences in body-composition values between patients and control subjects. Similarly, body-composition values of celiac disease patients who consumed the GFD long term were comparable with those of healthy subjects. CONCLUSIONS: Remarkable abnormalities in body composition were found in children at the time of diagnosis of celiac disease. Appropriate dietary treatment reverses body-composition abnormalities quickly and the beneficial effects of gluten withdrawal are persistent. Because these results are harder to achieve if celiac disease is first diagnosed in adulthood, efforts to encourage early diagnosis of celiac disease should be made.

Absorptiometry, Photon↗

[A comparative study of a bioelectrical impedance method and dual energy X-ray absorptiometry for body composition analysis].

The accuracy of a bioelectrical impedance analysis (BIA) was examined by comparison with a dual energy X-ray absorptiometry (DXA) to measure the body composition. The subjects consisted of 52 patients (21-78y.) with chronic renal failure (32 cases), osteoporosis (6 cases) and diabetes mellitus with obesity (14 cases). Bioelectrical impedance between hand and leg was measured by a body composition analyzer (Model BIA-BC-3, RJL) with a four-electrode system. One pair of current supply and detector electrode was attached to the right hand and another pair was to the leg. The total fat mass measured by BIA was well correlated with the value by DXA (r = 0.959, p < 0.01). The total fat mass by BIA was also correlated with the fat mass in the arms (r = 0.863), fat mass in the legs (r = 0.911), and fat mass in the trunk (r = 0.920) by DXA. The correlation rates were p < 0.01. These correlation coefficients were lower than the correlation rate of the total fat mass measured by DXA. The total lean mass measured by BIA was well correlated with the value by DXA (r = 0.963, p < 0.01). It was correlated with the lean mass in the arms (r = 0.899), lean mass in the legs (r = 0.929), and lean mass in the trunk (r = 0.906) by DXA, but these values were lower than the correlation rate of the total lean mass obtained by DXA. These findings suggest that BIA is a safe and simple method for analyzing the body composition of the total fat mass and the total lean mass, and total body composition is reflected more clearly than regional body composition.

Absorptiometry, Photon↗

Using ultrasound measurements to predict body composition of yearling bulls.

Carcass traits have been successfully used to determine body composition of steers. Body composition, in turn, has been used to predict energy content of ADG to compute feed requirements of individual animals fed in groups. This information is used in the Cornell value discovery system (CVDS) to predict DM required (DMR) for the observed animal performance. In this experiment, the prediction of individual DMR for the observed performance of group-fed yearling bulls was evaluated using energy content of gain, which was based on ultrasound measurements to estimate carcass traits and energy content of ADG. One hundred eighteen spring-born purebred and crossbred bulls (BW = 288 +/- 4.3 kg) were sorted visually into 3 marketing groups based on estimated days to reach USDA low Choice quality grade. The bulls were fed a common high-concentrate diet in 12 slatted-floor pens (9 to 10 head/pen). Ultrasound measurements including back-fat (uBF), rump fat, LM area (uLMA), and intramuscular fat were taken at approximately 1 yr of age. Carcass measurements including HCW, backfat over the 12th to 13th rib (BF), marbling score (MRB), and LM area (LMA) were collected for comparison with ultrasound data for predicting carcass composition. The 9th to 11th-rib section was removed and dissected into soft tissue and bone for determination of chemical composition, which was used to predict carcass fat and empty body fat (EBF). The predicted EBF averaged 23.7 +/- 4.0%. Multiple regression analysis indicated that carcass traits explained 72% of the variation in predicted EBF (EBF = 16.0583 + 5.6352 x BF + 0.01781 x HCW + 1.0486 x MRB - 0.1239 x LMA). Because carcass traits are not available on bulls intended for use as herd sires, another equation using predicted HCW (pHCW) and ultrasound measurements was developed (EBF = 39.9535 x uBF - 0.1384 x uLMA + 0.0867 x pHCW - 0.0897 x uBF x pHCW - 1.3690). This equation accounted for 62% of the variation in EBF. The use of an equation to predict EBF developed with steer composition data overpredicted the EBF predicted in these experiments (28.7 vs. 23.7%, respectively). In a validation study with 37 individually fed bulls, the use of the ultrasound-based equation in the CVDS to predict energy content of gain accounted for 60% of the variation in the observed efficiency of gain, with 1.5% bias, and identified 3 of the 4 most efficient bulls.

Adipose Tissue↗

Whole body composition of rats determined by dual energy X-ray absorptiometry is correlated with chemical analysis.

The use of dual energy X-ray absorptiometry (DXA) is increasing in animal research, but data comparing whole body composition by DXA and chemical analysis (CHEM) in rats are limited. Lean and obese Zucker female rats were used to compare DXA (QDR1000W, Hologic, Waltham, MA) values with CHEM data for percent fat (%FATDXA, %FATCHEM), lean body mass (%PROTDXA, %PROTCHEM) and bone mineral content (%BMCDXA, %ASHCHEM). Four groups of rats (n = 9) were tested for differences in body composition due to consumption of a 100 g guar gum supplement/kg to see if DXA was as sensitive as CHEM in detecting body composition differences induced by diet. The study was analyzed using a split-plot ANOVA where the main plot was a 2 x 2 factorial with phenotype (obese or lean) and treatment (guar gum or control) as the effects, and the subplot was method of detecting body composition (DXA and CHEM), which was treated as a repeated measure. Absolute values for percent fat differed significantly (P < 0.0001) between the two methods as %FATDXA was consistently higher than %FATCHEM. There was not a statistically significant difference due to method for %PROT (P = 0.13). Values for %BMCDXA were significantly (P < 0.0049) lower than %ASHCHEM values. The differences in body composition due to diet treatment were detected similarly by DXA and CHEM. Significant correlations were found between the methods (P < 0.0001) for %FAT (r = 0.99), %PROT (r = 0.96) and %BMC or ASH (r = 0.81). Bland-Altman plots showed good agreement between methods, and regression equations were developed to estimate CHEM values from DXA readings. DXA may provide an alternative method for assessing changes in whole body composition.

Absorptiometry, Photon↗

Age- and maturity-related changes in body composition during adolescence into adulthood: the Fels Longitudinal Study.

OBJECTIVES: To examine patterns of change in total body fat (TBF), percent body fat (%BF), and fat-free mass (FFM), from 8-20 y of age and the effect of rate of skeletal maturation. To determine the degree of tracking of body composition for individuals from childhood into adulthood. RESEARCH DESIGN: Annual serial data for TBF, %BF and FFM from underwater weighing using a multicomponent body composition model were collected from 130 Caucasian males and 114 Caucasian females between 1976 and 1996. Rate of maturation was defined as FELS skeletal age (SA) less chronological age (CA). Random effects models were used to evaluate general patterns of change and tracking of individual serial data over the 12 y age range. RESULTS: Changes in TBF followed a quadratic model for males and for females with declining rates of change. Changes for %BF followed a cubic model for males and females. General patterns of change for FFM followed a cubic model for males and a quadratic model for females. TBF for males and females increased with age, but the rates of change declined with age. %BF for females increased from age 8-20 y. For males, %BF increased with age, but the positive rates of change declined and became a negative when aged about 13 y and reached a minimum at about the age of 15 y. The rate of change for %BF increased thereafter. FFM for males and females increased with age, but the rates of change decreased with age. The extent of tracking is inversely related to the length of the time interval. At the same age, rapidly-maturing children have significantly larger amounts of TBF, %BF and FFM then slow-maturing children. Tracking in body composition for individuals persisted from childhood to adulthood. CONCLUSIONS: (1) There are gender-associated differences in these patterns of change for %BF and FFM but not for TBF; (2) TBF, %BF and FFM increased with increased rates of maturation; (3) significant tracking in body composition for individuals persists from childhood to adulthood.

Adolescent↗

Oral contraceptive use by teenage women does not affect body composition.

OBJECTIVE: To assess the effect of oral contraceptive (OC) use during adolescence on body composition parameters and cardiovascular disease risk factors. METHODS: We used 9 years of longitudinal data from 66 non-Hispanic white females who were 12 years old at study entry in 1990, and who were subsequently classified either as OC users or nonusers. The OC users (n = 39) used OCs for a minimum of 6 months, were still using at age 21, and had used OCs, on average, for 28 months. The nonusers (n = 27) never used OCs. Individuals who started and then stopped using OCs before age 21 or used OCs for less than 6 months were excluded from these analyses. Cardiolipoprotein profiles were obtained from fasting blood samples (from age 16 to 21), and body composition measurements were made by dual energy x-ray absorptiometry (from age 12.5 to 21). Longitudinal models were used to examine changes in body composition patterns and in cardiolipoprotein patterns. RESULTS: Between ages 12.5 and 21, gains by OC users and nonusers in height, weight, body mass index (BMI), and percent body fat were not significantly different. However, between ages 16 and 21, the OC users had significantly greater increases in total serum cholesterol, serum low-density cholesterol, and serum triglycerides than did the nonusers. CONCLUSION: The use of OCs in young women is associated with less favorable blood lipid patterns, but is not associated with weight gain or increased body fat. The long-term effects of the alteration in the lipid profiles are unknown.

Adolescent↗

Densitometric validation of nine anthropometric prediction equations of body composition in young native men of Mexico City.

Body density by hydrostatic method and anthropometric variables were measured in 29 young males, natives of Mexico City, in order to test the validity of nine currently used equations for predicting body composition. Tested equations were those reported for body density by Sloan, Wilmore, Jackson and Pollock, Durnin and Womersley, Lohman, and Pollock et al.; for lean body weight by Wilmore, and Hume-Rathbun; and for fat percentage by Yuhasz. Mean values for body density, fat percentage and lean body weight obtained by hydrostatic weighing were 1.0560 +/- 0.0149 kg/l, 18.9 +/- 6.7%, and 52.6 +/- 5.3 kg, respectively, while the means for predicted body density using the six regression equations varied from 1.0538 to 1.0654 kg/l, with a range of correlation from 0.846 to 0.900, and total errors from 0.0077 to 0.0124 kg/l. Mean lean body weight predicted by Wilmore was 55.7 +/- 5.9 kg, with an R of 0.902 and a total error of 4.0 kg, while values given in the same order by Hume-Rathbun were 52.8 +/- 4.8 kg, R of 0.892 and total error of 2.3 kg. Mean fat percentage predicted by Yuhasz was 17.8 +/- 5.6%, R of 0.869 and total error of 3.5%. Although by analysis of variance there were no significant differences among the means of the models, statistical analysis of individual differences between predicted and measured values were significant in six of them.(ABSTRACT TRUNCATED AT 250 WORDS)

Adipose Tissue↗

Body composition and somatotype characteristics of junior Olympic athletes.

Body composition and somatotype were determined in Junior Olympic competitors to evaluate the structural characteristics concomitant to high proficiency in various athletic activities. Underwater weighings and anthropometric determinations of somatotype were performed on 145 male and 133 female adolescent participants in national meet competition in the sports of track and field, gymnastics, diving, and wrestling. The most frequent differences within either the male or female Junior Olympic samples involved the performers in throwing events (shot put, discus, and javelin), who were taller, heavier, fatter, and of unique somatotype when compared to all or most other competitors. Additional structural differences, generally of a lesser magnitude, also existed between other groups of Junior Olympians. Differences in body composition characteristics were also noted when Junior Olympians were compared with other adolescent athletes or non-athletes.

Adolescent↗