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Abnormal body fat distribution detected by computed tomography in diabetic men.

Previous studies of body fat using tape measurement of body circumference and hand-held caliper skinfold measurements have suggested abnormal fat distribution in patients with diabetes mellitus. These methods, however, have high interobserver variability and cannot assess intra-abdominal fat independent of subcutaneous fat. We used computed tomography to evaluate body fat distribution in a group of 53 Japanese-American men of similar age and body mass index (weight divided by height squared). As determined by a 75-g oral glucose tolerance test, 29 subjects had type II diabetes and 24 were normal. Computed tomography cuts were obtained at three body levels to measure thorax, abdomen, and thigh subcutaneous fat area as well as intra-abdominal fat area. We found greater intra-abdominal fat in men with diabetes than in those without (123.74 vs. 95.54 cm2, P = 0.034) and a greater ratio of thorax to thigh subcutaneous fat (2.55 vs. 1.88, P = 0.016). These findings support the hypothesis that fat in different areas of the body differs metabolically. Computed tomography can be a useful tool for investigating whether abnormal body fat distribution is associated with the pathogenesis of abnormal glucose tolerance.

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Influence of smoking, body fat distribution, and alcohol consumption on serum lipids, lipoproteins, and apolipoproteins in early postmenopausal women.

The impact of smoking, alcohol consumption, obesity, and body fat distribution (measured either directly by dual photon absorptiometry as abdominal fat% (AF%) or as the waist-to-hip ratio (WTH] on serum lipids, lipoproteins, and apolipoproteins was investigated in 148 early postmenopausal women. All the women were healthy and none were taking medication known to influence the parameters studied. Smokers had significantly higher levels of triglycerides, low density lipoprotein cholesterol (LDL-C), and apolipoprotein B (P less than 0.05), and higher ratios of LDL-C/HDL-C and apolipoprotein B/A-I (P less than 0.01), but lower levels of high density lipoprotein cholesterol (HDL-C) and apolipoprotein A-I (P less than 0.01). Moderate alcohol consumption was positively associated with HDL-C and apolipoprotein A-I (P less than 0.001). Body weight and body mass index (BMI) tended to be positively associated with an atherogenic lipoprotein and apolipoprotein profile. However, body fat distribution parameters (AF% and WTH) were stronger predictors of lipoproteins and apolipoproteins than were body weight and BMI, which did not seem to be independent predictors of lipoproteins and apolipoproteins. We conclude that cigarette smoking and a central fat distribution have a significant, independent, negative influence on lipids, lipoproteins, and apolipoproteins, whereas moderate alcohol consumption has a positive effect on these parameters in early postmenopausal women.

Adipose Tissue↗

Association of serum C-reactive protein and indices of body fat distribution and overweight in Mexican American children.

BACKGROUND: Few data have been published on the association of indices of body fat distribution and components of the insulin resistance syndrome and serum C-reactive protein (CRP), an acute phase protein and putative risk factor for cardiovascular morbidity, in representative samples of total populations of children or in Hispanic Americans, who have a high prevalence of obesity and diabetes as adults. OBJECTIVE: To evaluate the association of waist-to-hip ratio (WHR) and body mass index (BMI) and components of the insulin resistance syndrome with CRP in Mexican American children and to assess the independence of the association. DESIGN: Cross-sectional survey of a large national sample, the Third National Health and Nutrition Examination Survey. PARTICIPANTS: Mexican American children aged 6-11 years. MEASUREMENTS: Body circumferences, skinfold thickness, BMI, blood pressure, and serum CRP and lipid concentrations. RESULTS: Overall, 11% of children had detectable CRP (> 0.21 mg/dL). CRP was not associated with age, gender, or birth weight. WHR showed significant positive associations with serum CRP concentration independent of BMI. BMI was also significantly associated with CRP independent of WHR. CRP was significantly associated with HDL cholesterol but not triglyceride, or systolic blood pressure, concentration after controlling for BMI. CONCLUSION: Further research is needed on the associations of serum CRP concentration with WHR and other indices of body fat distribution and obesity to elucidate the mechanisms and significance of these associations.

Blood Pressure↗

The concentrations of monoamine metabolites and neuropeptides in the cerebrospinal fluid of obese women with different body fat distribution.

DESIGN AND SUBJECTS: Several studies suggest neuroendocrine abnormalities in, particularly, abdominal, central obesity in humans, a condition with high morbidity and mortality. Therefore the concentrations of neuropeptides and catecholamines in cerebrospinal fluid (CSF) were analysed in 48 obese women, subdivided into groups with central, abdominal and gluteo-femoral distribution of body fat, utilising the waist-to-hip circumference ratio (WHR) for division. RESULTS: In comparisons with non-obese control women concentration of 5-hydroxyindol acetic acid (5-HIAA), methoxyhydroxyphenylglycol (MHPG), corticotropin releasing hormone (CRH), beta-endorphins (END) and neuropeptide Y (NPY) were lower, while homovanillic acid (HVA) was not different in obese women, HIAA, HVA and END correlated negatively with the WHR only in abdominally obese women, suggesting a threshold effect. HIAA vs HVA as well as CRF vs END correlated strongly in the total and both subgroups. An interrelationship between all these four substances was found in abdominal but not in gluteo-femoral obesity, suggesting a tighter functional coupling in the former group. Several correlations were found between CSF substance levels and appetite registrations, including END vs voracious eating, and for carbohydrate craving vs HIAA and vs HVA (negatively). This was also found only in abdominally obese women. CONCLUSION: Although the concentrations of monoamine metabolites and neuropeptides in the CSF sampled at the level of the lumber spine might not be representative for those at regulatory centers in the brain, the findings suggest that low 5-HIAA is characteristic of human obesity, and coupled to CRH as well as eating abnormalities, particularly in abdominal obesity. Since CRH is regulating the balance between the autonomic nervous systems, insulin secretion and thermogenesis in animals, corresponding anomalies in abdominal obesity in humans may have a central origin.

Adipose Tissue↗

Body fat distribution and uterine leiomyomas.

PURPOSE: Investigation of the etiological relationship between body fat and uterine leiomyomas. SETTINGS: This was a case-control study. Percent body fat was measured bioelectrically with a body fat analyzer. SUBJECTS: In Sapporo City, Japan, 100 women with uterine leiomyomas (pathologically diagnosed) and 200 controls who were confirmed to have no uterine leiomyomas by clinical examination. RESULTS: Among the four types classified by BMI (over/under 24.0) and percent body fat (over/under 30%), the occult obesity type (BMI < 24.0 and percent body fat > or = 30%) had the highest risk. There were no patients of muscular type (BMI > or = 24.0 and percent body fat < 30%). Women with more than 0.80 of waist-to-hip ratio were also at significantly higher risk. CONCLUSIONS: Occult obesity and upper body fat distribution may lead to the development of uterine leiomyomas.

Adipose Tissue↗

Effect of regain of body weight on regional body fat distribution: comparison between pre- and postmenopausal obese women.

The aim of our study was to determine if regain of body weight increases visceral fat in obese women and if regain of weight has a different effect upon pre- and postmenopausal women. Twenty obese women (11 pre- and 9 postmenopausal) underwent a very low energy diet (VLED) for 2 weeks to lose weight. They then regained body weight in spite of the recommended hypocalorie diet. No significant modifications in body fat distribution indexes were found by computed tomography between VLED and after regain of weight. No significant changes were found in metabolic variables. No interactions between menopausal status and regain of body weight were observed. In conclusion, regain of weight does not seem to cause an increase in visceral fat; both pre- and postmenopausal women showed the same body fat distribution before weight loss and after regain of weight.

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Differential effects of body fatness and body fat distribution on risk factor for cardiovascular disease in women. Impact of weight loss.

This study examines the role of obesity and body fat distribution (ie, waist-to-hip ratio [WHR]) on cardiovascular disease (CVD) risk factors in 50 nondiabetic, obese (body mass index [BMI], 31 +/- 2 kg/m2, mean +/- SD), 45 +/- 10-year-old women. The data obtained at baseline and after weight loss were analyzed after dividing subjects by WHR into upper-body (WHR > 0.80) and lower-body (WHR < or = 0.80) groups and by median-split BMI into more obese (BMI > or = 31) and less obese (BMI < 31) groups. At baseline, the upper-body obese women, when compared with lower-body obese women, had higher plasma triglycerides (TGs) (175 +/- 85 versus 111 +/- 47 mg/dL, respectively; P < .001) and lower high-density lipoprotein cholesterol (HDL-C) (44 +/- 10 versus 54 +/- 11, respectively; P < .01) but similar total and low-density lipoprotein cholesterol levels and blood pressure. There were no significant differences in these CVD risk factors at baseline by BMI split. Although weight loss (-9 +/- 5 kg) lowered blood pressure and TGs irrespective of WHR or BMI, only upper-body obese women raised HDL-C. Moreover, the magnitude of the changes was greatest in women with an upper-body fat distribution. In women with WHR > 0.80, HDL-C increased by 11%, to 49 mg/dL (P < .001), and TGs decreased by 24%, to 134 mg/dL (P < .001).(ABSTRACT TRUNCATED AT 250 WORDS)

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Incidence of hypertension and stroke in relation to body fat distribution and other risk factors in older women.

The relation between body fat distribution, as measured by the waist-to-hip circumference ratio, and the 2-year incidences of hypertension and stroke were examined in a cohort of 41,837 women aged 55-69 years. Women who developed hypertension were 2.1 (95% confidence interval 1.7-2.6) times more likely to be in the upper tertile of waist-to-hip ratio than those who did not. Adjustment for age, body mass index (kilograms per meter squared), cigarette smoking, physical activity, alcohol intake, and education level reduced this odds ratio to 1.6 (95% confidence interval 1.3-2.1). Women who developed a stroke were also 2.1 (95% confidence interval 1.5-2.9) times more likely to be in the upper tertile of waist-to-hip ratio than those who did not. Adjustment for the same covariates also lowered this odds ratio to 1.6 (95% confidence interval 1.1-2.4). Further adjustment for hypertension and diabetes mellitus reduced the estimated risk of stroke due to elevated waist-to-hip ratio to 1.3 (95% confidence interval 0.8-2.1). Hypertension, diabetes mellitus, and cigarette smoking remained significantly associated with stroke incidence in the multivariate model. These results indicate that abdominal adiposity, as measured by an increased waist-to-hip ratio, increases the risks of hypertension and stroke, even after accounting for overall body mass. The association of abdominal adiposity with risk of stroke is related, in part, to the association of abdominal adiposity with hypertension and diabetes.

Abdomen↗

Additive effect of the mutations in the beta3-adrenoceptor gene and UCP3 gene promoter on body fat distribution and glycemic control after weight reduction in overweight subjects with CAD or metabolic syndrome.

OBJECTIVE: To analyze the effects of the mutations in the beta3-adrenoceptor (beta3-AR) gene and/or uncoupling protein3 (UCP3) gene promoter on body fat distribution and glycemic control after mild weight reduction in overweight-obese subjects with coronary artery disease (CAD) or metabolic syndrome. DESIGN: Clinical intervention study of the -300 kcal/day mild weight reduction program for 12 weeks. SUBJECTS: A total of 224 overweight-obese subjects with CAD or metabolic disorder, subdivided into the following four categories: (1) wild type (TT-CC, n=73); (2) only UCP3 promoter variant (TT-CT/TT, n=90); (3) only beta3-AR variant (TA/AA-CC, n=29); (4) both variants (TA/AA-CT/TT, n=32). MEASUREMENT: Body mass index (BMI), blood pressure, calorie intakes, body fat distribution, serum glucose, insulin, free fatty acids, C-peptide and lipids before and after weight reduction. RESULTS: After 12 weeks, all subjects lost approximately 5% of their initial body weight. Despite similar weight reduction, the highest decreases in abdominal adipose tissue at both L1 and L4 levels were observed in the 'wild-type' group (P<0.001) and the second highest in 'only UPC3 promoter variant' group (P<0.001). On the other hand, both variant-carriers had the smallest reduction only in visceral fat area at the L4 level. All subjects except both variant-carriers showed significant reductions in the fasting levels of glucose and FFA. The response areas of glucose (P<0.01) and insulin (P<0.05) were reduced largest in the 'wild-type' group and second largest in the 'UCP3 promoter variant' group. CONCLUSION: All the four groups showed similar weight reduction after -300 kcal/d for 12 weeks. However, the beneficial effects on body fat distribution and glycemic control were greatest in the 'wild-type' group and smallest in 'both variants' group. In addition, these effects were less beneficial in carriers with beta3-AR gene variant than with UCP3 gene promoter variant.

Adipose Tissue↗

The association of body weight, body fatness and body fat distribution with osteoarthritis of the knee: data from the Baltimore Longitudinal Study of Aging.

OBJECTIVE: To examine the association of body weight, body fatness, and body fat distribution with osteoarthritis (OA) of the knee. METHODS: Bilateral standing knee radiographs, taken between 1985 and 1991, of 465 Caucasian men and 275 Caucasian women subjects aged 40 and above in the Baltimore Longitudinal Study of Aging were read by one investigator for grade of OA using Kellgren-Lawrence scales. Measures of obesity, assessed at same visit as the last radiograph during this interval, included body mass index, percent body fat, and body fat distribution. RESULTS: Both men and women with definite knee OA had higher age adjusted mean levels of body mass index, while women only had higher age adjusted mean levels of percent body fat. Both women and men in the highest tertile of body mass index had significantly increased odds of both definite and bilateral knee OA; women in the middle and highest tertile of percent body fat had significantly increased odds of both definite and bilateral knee OA, and men in the highest tertile of waist-hip ratio had significantly increased odds of bilateral knee OA. After adjusting for body mass index, however, the association of percent body fat and waist-hip ratio with knee OA in women and men, respectively, was no longer significant. CONCLUSION: These data further extend observations that body weight is associated with both definite and bilateral knee OA in both sexes, and support a stronger contribution of mechanical as opposed to systemic factors to explain this association.

Adipose Tissue↗

Accuracy of self-measurement of body fat distribution by waist, hip, and thigh circumferences.

There are indications that body fat distribution, independent of obesity, may be a disease risk factor. The accuracy of self-measurement of waist, hip, and thigh circumferences, indicators of fat distribution, were examined for 227 women (aged 19-45) who were sent either a calibrated or uncalibrated tape measure and subsequently remeasured by a trained technician. Subjects tended to underestimate all circumferences somewhat. Spearman correlations between self-measurement and technician measurement were 0.88, 0.89, and 0.86 for the waist, hip, and thigh, respectively, and 0.65 and 0.77 for the waist-to-hip waist-to-thigh ratios. Correlations for waist, but not other measures, were better with the uncalibrated than with the calibrated tape. Accuracy did not vary within strata of education, body mass index, or waist-to-hip ratio. Subjects were able to measure their circumferences with reasonable accuracy. Circumference measures were more accurate than were computed ratios of circumferences; waist-to-thigh ratios were more accurate than were waist-to-hip ratios.

Abdomen↗

Pubertal alterations in growth and body composition. VI. Pubertal insulin resistance: relation to adiposity, body fat distribution and hormone release.

OBJECTIVE: To investigate the independent influence of alterations in fat mass, body fat distribution and hormone release on pubertal increases in fasting serum insulin concentrations and on insulin resistance assessed by the homeostasis model (HOMA). DESIGN AND SUBJECTS: Cross-sectional investigation of pre- (n=11, n=8), mid- (n=10, n=11), and late-pubertal (n=10, n=11) boys and girls with normal body weight and growth velocity. MEASUREMENTS: Body composition (by a four-compartment model), abdominal fat distribution and mid-thigh interfascicular plus intermuscle (extramyocellular) fat (by magnetic resonance imaging), total body subcutaneous fat (by skinfolds), mean nocturnal growth hormone (GH) release and 06:00 h samples of serum insulin, sex steroids, leptin and insulin-like growth factor-I (IGF-I). RESULTS: Pubertal insulin resistance was suggested by greater (P<0.001) fasting serum insulin concentrations in the late-pubertal than pre- and mid-pubertal groups while serum glucose concentrations were unchanged and greater (P<0.001) HOMA values in late-pubertal than pre- and mid-pubertal youth. From univariate correlation fat mass was most related to HOMA (r=0.59, P<0.001). Two hierarchical regression models were developed to predict HOMA. In one approach, subject differences in sex, pubertal maturation, height and weight were held constant by adding these variables as a block in the first step of the model (r(2)=0.36). Sequential addition of fat mass (FM) increased r(2) (r(2)((inc)remental)=0.08, r(2)=0.44, P<0.05) as did the subsequent addition of a block of fat distribution variables (extramyocellular fat, abdominal visceral fat, and sum of skinfolds; r(2)(inc)=0.11, r(2)=0.55, P<0.05). Sequential addition of a block of hormone variables (serum IGF-I and log((10)) leptin concentrations; r(2)(inc)=0.04, P>0.05) did not reliably improve r(2) beyond the physical characteristic and adiposity variables. In a second model, differences in sex and pubertal maturation were again held constant (r(2)=0.25), but body size differences were accounted for using percentage fat data. Sequential addition of percentage body fat (r(2)((inc)remental)=0.11, r(2)=0.36, P<0.05), then a block of fat distribution variables (percentage extramyocellular fat, percentage abdominal visceral fat, and percentage abdominal subcutaneous fat; r(2)(inc)=0.08, r(2)=0.44, P=0.058), and then a block of serum IGF-I and log((10)) leptin concentrations (r(2)(inc)=0.07, r(2)=0.51, P<0.05) increased r(2). Mean nocturnal GH release was not related to HOMA (r=-0.04, P=0.75) and therefore was not included in the hierarchical regression models. CONCLUSION: Increases in insulin resistance at puberty were most related to FM. Accumulation of fat in the abdominal visceral, subcutaneous and muscular compartments may increase insulin resistance at puberty beyond that due to total body fat. Serum concentrations of leptin and IGF-I may further modulate HOMA beyond the effects of adiposity and fat distribution. However, the results are limited by the cross-sectional design and the use of HOMA rather than a criterion measure of insulin resistance.

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Excess body fat distribution and glucose homeostasis in obese Arab women.

The relationship of body fat distribution to glucose intolerance and non-insulin-dependent diabetes mellitus in Arab women was studied in 102 obese non-diabetic and 40 obese women with diabetes. The obese women underwent a glucose tolerance test. Linear regression analysis revealed a significant correlation between the waist/hip ratio and the plasma glucose concentration at 120 min. When divided into two groups according to the median of their waist/hip ratio (0.815), obese women without history of diabetes but with high waist/hip ratio (0.86 +/- 0.07, mean +/- SD) had significantly higher prevalence of glucose intolerance and of diabetes mellitus than those with the low ratio (0.78 +/- 0.03, chi 2 = 9.32, p less than 0.001). The highest ratio (0.89 +/- 0.06) was observed in the obese women with known diabetes mellitus.

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Effect of climacteric transition and hormone replacement therapy on body weight and body fat distribution.

In the present study we evaluated the effects of climacteric modifications on body weight and fat distribution. From women attending a menopause clinic we selected 2175 untreated, normal healthy women who were divided into three groups: premenopausal (n = 540), perimenopausal (n = 750) and postmenopausal (n = 885), and compared them with 354 postmenopausal women receiving different forms of hormone replacement therapy (HRT). The total body fat tissue mass and distribution were analyzed using dual-energy X-ray absorptiometry. Body weight and body mass index (BMI) were significantly higher in perimenopausal and postmenopausal than in premenopausal women. Mean total body fat and fat as a percentage of soft tissue were significantly (p < 0.05) higher in the perimenopausal and postmenopausal groups than in the premenopausal group. Fat tissue and regional fat tissue as a percentage of total fat tissue were higher in the trunk (p < 0.0001) and arms (p < 0.0001) in perimenopausal and postmenopausal than in premenopausal women. In postmenopausal women, leg fat tissue was significantly (p < 0.05) lower than in premenopausal and perimenopausal groups. Total body and leg lean tissue were significantly lower (p < 0.05) in postmenopausal than in premenopausal and perimenopausal women. In age-matched women with similar BMI, total body fat as a percentage of soft tissue was significantly (p < 0.001) higher in the perimenopausal and postmenopausal groups than in the premenopausal group. As for body fat distribution, fat as a percentage of total fat tissue was significantly higher in the trunk (p < 0.0001) region in perimenopausal and postmenopausal women compared with the premenopausal group. In the legs, fat as a percentage of total fat tissue was significantly higher (p < 0.05) in the premenopausal than in the postmenopausal group. In the arms a slight but not significant (p < 0.18) difference was shown in fat distribution between the three untreated groups. In age-matched HRT-treated postmenopausal women, the fat tissue was similar to that in the premenopausal group. The present results confirm that endocrine changes during the menopausal transition, rather than the aging process, are related to changes in body weight and fat distribution. Perimenopausal and postmenopausal women show a shift to a central, android fat distribution that can be counteracted by HRT.

Adult↗

Obesity, body fat distribution, and ambulatory blood pressure in children and adolescents.

Obesity is a common disease with an ever-increasing prevalence and usually with late-onset consequences. If acquired during childhood, it tracks into adult life to some extent, and since the relationship between obesity and hypertension is well established in adults, obese children appear to be at particularly high risk of becoming hypertensive adults. In the authors' study, obese children seemed to have significantly higher casual and ambulatory blood pressure than nonobese children, except for nighttime diastolic blood pressure. The health effects of obesity may depend on the anatomic distribution of body fat, which in turn may be a better indicator of endocrinologic imbalance, environmental stress, or genetic factors than is fatness per se. Subjects with a higher waist-to-hip ratio or a larger waist, as an estimate of central obesity, tend to have higher blood pressure values even during childhood. Prevention of the onset of obesity in early life may be important to reducing the risk of coronary heart disease in later life.

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Metabolic implications of body fat distribution.

Insulin resistance is the cornerstone for the development of non-insulin-dependent diabetes mellitus (NIDDM). Free fatty acids (FFAs) cause insulin resistance in muscle and liver and increase hepatic gluconeogenesis and lipoprotein production and perhaps decrease hepatic clearance of insulin. It is suggested that the depressing effect of insulin on circulating FFA concentration is dependent on the fraction derived from visceral adipocytes, which have a low responsiveness to the antilipolytic effect of insulin. Elevated secretion of cortisol and/or testosterone induces insulin resistance in muscle. This also seems to be the case for low testosterone concentrations in men. In addition, cortisol increases hepatic gluconeogenesis. Cortisol and testosterone have "permissive" effect on adipose lipolysis and therefore amplify lipolytic stimulation; FFA, cortisol, and testosterone thus have powerful combined effects, resulting in insulin resistance and increased hepatic gluconeogenesis. All these factors promoting insulin resistance are active in abdominal visceral obesity, which is closely associated with insulin resistance, NIDDM, and the "metabolic syndrome." In addition, the endocrine aberrations may provide a cause for visceral fat accumulation, probably due to regional differences in steroid-hormone-receptor density. In addition to the increased activity along the adrenocorticosteroid axis, there also seem to be signs of increased activity from the central sympathetic nervous system. These are the established endocrine consequences of hypothalamic arousal in the defeat and defense reactions. There is some evidence that suggests an increased prevalence of psychosocial stress factors is associated with visceral distribution of body fat. Therefore, it is hypothesized that such factors might provide a background not only to a defense reaction and primary hypertension, suggested previously, but also to a defeat reaction, which contributes to an endocrine aberration leading to metabolic aberrations and visceral fat accumulation, which in turn leads to disease.

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Lipid profile, BMI, body fat distribution, and aerobic fitness in men with metabolic syndrome.

Obesity, impaired glucose tolerance, type 2 diabetes, hyperlipidemia, hypertension, and insulin resistance are wellknown components of metabolic syndrome and are associated to increased cardiovascular morbidity. The present study aimed to evaluate the relationships between cardiorespiratory fitness, body fat distribution, and selected coronary heart disease risk factors. A total of 22 untrained subjects affected by one or more features of metabolic syndrome and without clinical history of cardiovascular disease were studied. Nondiabetic subjects underwent an oral glucose tolerance test for glucose and insulin measurement; fasting glucose and insulin were measured in diabetic patients. Complete lipid profile, thyroid hormones, and thyroid-stimulating hormone were measured in all subjects. Basal energy expenditure and cardiorespiratory fitness were measured using a K4 analyzer. Cardiorespiratory fitness ( VO(2max)/kg) was assessed using a treadmill graded exercise test. Peak aerobic capacity ( VO(2max)/kg) was predicted by body fat distribution, insulin sensitivity index, and high-density lipoprotein (HDL) and low-density lipoprotein (LDL) cholesterol ( p<0.001). A significant relationship was found between cardiorespiratory fitness ( VO(2max)/kg) and body mass index (BMI), insulin sensitivity index, and LDL cholesterol ( r=0.60, p<0.05; r=0.66, p<0.01 and r=0.54, p<0.05, respectively). Data demonstrated that aerobic fitness is related to metabolic parameters and to body fat distribution, and suggest that its modification may improve well-known predictors of coronary artery disease.

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Sex hormone concentrations in men with angiographically assessed coronary artery disease--relationship to obesity and body fat distribution.

The relationship between circulating sex hormone levels and the occurrence of coronary artery disease (CAD) was studied in a group of 274 men undergoing coronary angiography. Hormone levels in men with CAD (n = 200) were compared to those in men found to be free of coronary lesions (n = 74). No significant differences were found for serum concentrations of estradiol, total testosterone, sex-hormone-binding globulin, free androgen index, dehydroepiandrosterone sulfate, or cortisol between the two groups. Serum androgens were negatively correlated to age in both groups, whereas estradiol was weakly associated with total cholesterol in the group of men without CAD. No consistent associations were detected between sex hormone levels and the degree of obesity or the distribution of body fat, the latter being assessed by the ratio of waist-to-hip circumferences. The results of this study do not support a significant role of sex steroid hormones in coronary artery disease in men.

Adult↗