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Association between lean mass, fat mass, and waist circumference with bone mineral density in Mexican children and adolescents: a cross-sectional study.

To assess the associations of lean mass (LM), fat mass (FM), truncal fat mass (TFM), and waist circumference (WC) with bone mineral density (BMD) in Mexican youth, independently of body weight.&#xa0;We analyzed cross-sectional data from 1,054 children and adolescents from the Health Workers Cohort Study. We measured total and region-specific BMD, LM, and FM, with dual-energy X-ray absorptiometry. To eliminate the effect of body weight on FM, LM, TFM, and WC, weight-adjusted values were generated using the residuals method, and then we employed multivariate linear regression models adjusted for relevant potential confounders. We further stratified the analysis by sex, age group, and sexual maturation.&#xa0;LM was positively associated with BMD in various anatomical sites, with &#x3b2; coefficients ranging from 0.004 to 0.013 in both sexes (P&#x2009;<&#x2009;0.05). FM was inversely related to total BMD and other sites, with &#x3b2; coefficients ranging from -0.013 to -0.006 (P&#x2009;<&#x2009;0.05). WC showed negative associations with BMD at some sites, with &#x3b2; values ranging from -0.007 to -0.002. TFM was negatively associated with BMD. During puberty, the associations were consistent across all sites, whereas this was not the case for all sites after puberty. These patterns were similarly observed across different age groups.Conclusion:&#xa0;An increased LM and reduced FM are associated with higher BMD, particularly in the leg and hip regions, during childhood and adolescence, a critical developmental stage essential for healthy bone accrual and balance in adulthood.

Humans

Gastric-acid output, pepsin output, and lean body mass in normal and duodenal-ulcer subjects.

Gastric-acid output bears a significant relationship to parietal cell mass and to lean body mass. The relationships of pepsin output to gastric-acid output and to lean body mass have been investigated in 13 normal subjects and 40 duodenal-ulcer patients. Peak pepsin output (P.P.O[I]) was stimulated by insulin-induced hypoglycaemia and the enzyme was assayed by Piper's method. Peak acid output to pentagastrin (P.A.O.[Pg] was obtained at a separate test. P.P.O.(I) correlated significantly with P.A.O.(Pg) in normal subjects (r equals 0-889, P less than 0-0001). P.P.O.(I) also showed good correlation with lean body mass (L.B.M.) (r equals 0-714, P less than 0-01), suggesting that P.P.O.(I) reflects peptic cell mass in normal subjects. In 40 duodenal-ulcer subjects there was no significant overall correlation of P.P.O.(I) with P.A.O(Pg) or with L.B.M. However, expressing the results as output of pepsin per milliequivalent of acid per kilogramme of lean body mass allowed separation of the ulcer patients into two groups whose ratios appeared to correlate with their symptomatic state at the time of testing: thus mean P.P.O(I) per meq. acid per kg. L.B.M. for duodenal-ulcer patients in relapse was significantly greater than the ratios for the patients in remission and for the normal group (P less than 0-001), suggesting either the presence of an increased sensitivity to insulin stimulation or a lack of pepsin inhibitor substance during a relapse of ulcer symptoms.

Body Height

A nomogram to predict lean body mass in men.

A simple three scale nomogram is presented to predict lean body mass in men from two anthropometric measurements: height and the circumference of the flexed biceps. The prediction equation used in constructing the nomogram was established from data collected on 198 USAF aircrewmen. Lean body mass was determined on these men by a standard tritium dilution technique. The equation was validated on a total of 65 additional flyers, comparing measurements obtained by tritium dilution (r = 0.91), 40K wholebody counter techniques (r = 0.90), and water-displacement techniques (r = 0.86). A second nomogram demonstrates the flexibility in using this anthropometric-type prediction of body composition to arrive at personalized weight standards.

Adult

Growth and growth velocity of lean body mass and fat in adolescent boys.

Beginning at age 10 years, height, weight, body density, and bone age of 40 normal boys were measured yearly over a period of 8 years. From body density, lean body mass and body content of fat were calculated. Values for all measurements are included in the Appendix and mean values, including those for lean body mass and percentage of body fat, are presented for each year in Table 1. Coefficients of correlation between measurements made during the first and eighth years of study were high for height (0.68), weight (0.50), and lean body mass (0.60), but relatively low for body fat (0.25). Correlation coefficients between the various parameters in a given year are presented in Table 2. The maximum yearly increment in height, weight, and lean body mass of individual subjects coincided in time. The respective mean values for the year of maximum growth were 9.4 cm, 8.1 kg, and 7.5 kg. Throughout the growth spurt, the contribution of fat to increase in body weight was small. It may be concluded that, next to height, the absolute amount of lean body mass demonstrates the most constant trend of development during adolescence.

Adipose Tissue

Effects of physical training and lean body mass of plasma amino acids in man.

Postabsorptive plasma amino acid and insulin concentrations were determined in subjects with hyperplastic obesity and in nonobese controls before and after a 6-wk period of physical training. After the training period the plasma concentrations of insulin and leucine decreased and the concentration of alanine increased in the obese subjects. No changes were noticed in the controls. The obese subjects had elevated plasma levels of valine, isoleucine, leucine, tyrosine, and phenylalanine before as well as after physical training. The concentrations of these amino acids were correlated to the plasma insulin level and to lean body mass before but only to lean body mass after physical training. It is suggested that the lean body mass, whick is higher in hyperplastic obesity, contributes to the elevated concentrations of amino acids, and it is unlikely that the insulin decreases in the obese subjects after physical training is mediated through an effect of amino acids on insulin secretion.

Adult

Estimation of body fat and lean body mass from anthropometric dimensions in adult Indian women.

Mean values and standard deviations of body fat and lean body mass of 65 young Indian women aged 20-25 years were 9.00 kg, SD 6.14 and 36.02 kg, SD 3.99 respectively. Body fat per cent was 18.72 SD 10.48. On selective stepwise multiple linear regression analysis, the measurements selected for predicting body fat % were maximum thigh girth, chest diameter, height up to gluteal furrow and shoulder diameter, all four together giving a multiple correlation coefficient of 0.88. For predicting lean body mass, the measurements selected were stature, upper arm length, lower thigh girth and chest diameter, all four together giving a multiple correlation coefficient of 0.84.

Adipose Tissue

Relationship of anthropometric dimensions to lean body mass in children.

This study is designed to compare the predictability of lean body mass, as measured by whole-body 40K spectrometry, from skinfolds, circumferences and skeletal widths in children 7 to 12 years of age. The specific skinfold sites were back, upper arm, side, waist, abdomen, and calf; the circumference sites were forearm, upper arm (flexed), wrist, thigh, calf, and chest (deflated); skeletal widths included wrist, knee, ankle, elbow, shoulder and hip. In a group of 163 boys, three skinfolds and body weight accounted for 89.7% of the variation in LBM, two circumferences and height and weight accounted for 87.2% of the variation in LBM, and two skeletal widths and height and weight accounted for 87.4% of the variation in LBM. Combining all measurement variables into one analysis resulted in five significant variables: weight, side skinfold, abdomen skinfold, forearm circumference and chest circumference with the coefficient of determination 90.6%, only slightly higher than with weight and three skinfolds. The significant variables from the combined analysis were then used to predict LBM in five separate age groups of boys and a sample of 44 girls. In general, weight, forearm and chest circumference contributed positively to LBM and side and abdomen skinfolds contributed negatively. The regression coefficients for each site were not significantly different among age groups. LBM in children can be estimated from skinfolds, circumferences or skeletal widths with considerable success, as has been shown to be the case in college-age adults.

Anthropometry

Total body water and lean body mass estimated by ethanol dilution.

Total body water (TBW) was determined on 35 subjects with a tritium (HTO) and an ethanol (ETH) dilution method, the latter using breath analyses for blood ethanol content. Lean body mass (LBM) was estimated by hydrostatic weighing. Mean values for water fraction (TBW/wt) were 0.618 +/- 0.05 with HTO and 0.603 +/- 0.06 with ETH. The difference was not significant. The correlation between the two methods was highly significant (r = 0.90, SEE = 3.5 liters, P less than 0.0001). High correlations were also found between TBW and LBM with either method for TBW (r = 0.94 with HTO, r = 0.91 with ETH). Mean values for TBW/LBM were 0.735 with HTO and 0.717 with ETH. The ETH method compares favorably with the HTO, it has the advantage that it is nonradioactive and can be repeated daily if necessary.

Body Composition

Effects of testosterone-augmented multimodal exercise intervention in spinal cord injury: a randomized controlled trial.

CONTEXT: Spinal cord injury (SCI) leads to profound muscle atrophy, aerobic deconditioning, and metabolic dysfunction. Exercise-based interventions alone produce modest benefits. Whether testosterone can augment physiologic responses to exercise in this population remains untested. OBJECTIVE: To evaluate efficacy and safety of home-based intervention combining functional electrical stimulation-assisted leg cycling (FES-LC), arm ergometry (AE), and testosterone compared with FES-LC, AE plus placebo in adults with SCI. METHODS: This randomized, placebo-controlled, double-blind trial enrolled 84 adults (76 males and 8 females) aged 19-70 years with SCI (neurologic levels C4-T12; AIS grades A-D). Participants were randomized to multimodality intervention (home-based FES-LC, AE and intramuscular testosterone undecanoate) (n = 38) or control intervention (FES-LC, AE plus placebo) (n = 46) for 16 weeks. The primary outcome was change in aerobic capacity (peak VO2) during AE cardiopulmonary exercise testing. Secondary outcomes included lean mass, hemoglobin, cardiometabolic markers, and safety. RESULTS: Mean (SD) age was 44 (13) years and time since injury was 13.9 (13) years). Between-group changes in peak VO2 were not statistically significant. Within-group improvements were larger in multimodality (&#x223c;19% increase; 0.10 L/min; 95% CI, 0.02-0.18 L/min) compared to controls (&#x223c;6% increase; 0.06 L/min; 95% CI, -0.01-0.13). The multimodality group gained significantly more lean mass (whole-body:1.84 kg, 95% CI: 0.52-3.16, P = .007; lower extremity 0.92 kg, 95% CI: 0.38-1.45, P = .001), and anemia was corrected in a greater proportion of participants. Adverse event rates were similar between groups. CONCLUSION: A home-based multimodality intervention combining FES-LC, AE, and testosterone was safe and associated with greater improvements in lean mass and hemoglobin. Although between-group differences in aerobic capacity were not statistically significant, greater within-group increases were observed in the multimodality group. These findings may inform future studies of testosterone-augmented exercise interventions for individuals living with SCI.

Humans

Muscle strength and body composition as determinants of blood pressure in young men.

The correlations of blood pressure to various indices of muscularity and fatness were studied in 183 young healthy men (mean age 19.7, SD 2.1 years). Systolic pressure showed significant positive correlations with body fat percentage, isometric strength of trunk extensors, body mass index, lean body mass, strength of leg extensors, heart rate, and the sum of four skinfolds. Diastolic pressure had significant positive correlations with body mass index, lean body mass, body fat percentage, sum of skinfolds, strength of leg extensors, strength of trunk extensors, and age. A stepwise selective multiple regression analysis for systolic pressure resulted in four significantly correlating variables: body fat percentage (p less than 0.001), heart rate (p less than 0.01), lean body mass (p less than 0.05), and strength of trunk extensors per kg body weight (p less than 0.05). For diastolic pressure the analysis resulted in two explaining variables: body mass index (p less than 0.001) and age (p less than 0.05). In a regression equation with 13 variables the strength of trunk flexors was negatively correlated with diastolic pressure. It is concluded that both fatness and muscularity are factors related to blood pressure in young men. The muscularity effect is more clearly associated with trunk and leg extensor strength.

Adipose Tissue

Effects of free-weight resistance training based on hexagonal barbell deadlift in older women: A 24-week randomized controlled trial.

PURPOSE: This randomized controlled trial examined effects of a 24-week hexagonal barbell deadlift (HBDL)-based free-weight resistance training program on body composition, trunk muscle function, and functional performance in older women. METHODS: Thirty-two women (67.6&#xa0;&#xb1;&#xa0;6.3&#xa0;years) were randomly assigned to an HBDL group (DG, n&#xa0;=&#xa0;16) or control group (CG, n&#xa0;=&#xa0;16). DG trained twice weekly for 24&#xa0;weeks under supervision. Primary outcomes were body composition and isokinetic trunk peak torque and average power at 60&#xb0;/s and 120&#xb0;/s. Secondary outcomes were isokinetic knee function, mobility, and maximal isotonic strength. Between-group differences after the intervention were examined by analysis of covariance (&#x3b1;&#xa0;=&#xa0;0.05). RESULTS: After intervention, DG showed greater trunk lean mass (+0.4&#xa0;kg vs. -0.2&#xa0;kg, p&#xa0;=&#xa0;0.006) than CG, and reductions in body fat percentage (-1.4% vs. +0.3%, p&#xa0;=&#xa0;0.003), total fat mass (-1.1&#xa0;kg vs. +0.3&#xa0;kg, p&#xa0;=&#xa0;0.013), and regional fat mass (trunk, gluteal, thigh; all p&#xa0;<&#xa0;0.05). Trunk extensor peak torque at 60&#xb0;/s (+26.0% vs. -6.3%, p&#xa0;<&#xa0;0.001) and average power at 60&#xb0;/s (+38.1% vs. -7.6%, p&#xa0;<&#xa0;0.001) and 120&#xb0;/s (+33.2% vs. +0.1%, p&#xa0;=&#xa0;0.002) improved significantly. DG also showed better eyes-closed static balance and 6-min walk performance (both p&#xa0;<&#xa0;0.05). Whole-body lean mass and lower-limb isokinetic strength did not differ between groups. Attendance was 89.6% with no adverse events. CONCLUSION: HBDL-based free-weight resistance training is a safe, feasible, and effective strategy to improve body composition, trunk extensor function, and mobility in older women.

Humans

Disentangling the association between chronic pain and sarcopenia-related traits: A bidirectional Mendelian randomization study.

ObjectiveThis study aimed to investigate the potential causal relationships between chronic pain and three key sarcopenia-related quantitative traits: (a) hand grip strength; (b) usual walking pace; and (c) appendicular lean mass, using bidirectional two-sample Mendelian randomization.MethodsWe conducted bidirectional two-sample Mendelian randomization using summary-level data from large-scale genome-wide association studies to assess the genetically predicted associations between chronic pain, including multisite chronic pain and chronic widespread musculoskeletal pain, and the aforementioned sarcopenia-related traits.ResultsMendelian randomization revealed that multisite chronic pain was significantly associated with an increased risk of low hand grip strength (odds ratio = 1.70; p&#x2009;<&#x2009;0.001) and decreased usual walking pace (odds ratio = 0.81; p&#x2009;<&#x2009;0.001); chronic widespread musculoskeletal pain was also significantly associated with decreased usual walking pace (odds ratio = 0.15; p&#x2009;<&#x2009;0.001). Additionally, higher left hand grip strength was significantly associated with a lower risk of multisite chronic pain (odds ratio = 0.90; p<&#x2009;0.001) and chronic widespread musculoskeletal pain (odds ratio = 0.99; p&#x2009;=&#x2009;0.002); higher right hand grip strength was significantly associated with a lower risk of multisite chronic pain (odds ratio = 0.91; p&#x2009;=&#x2009;0.002); and higher usual walking pace was significantly associated with a lower risk of multisite chronic pain (odds ratio = 0.49; p&#x2009;<&#x2009;0.001) and chronic widespread musculoskeletal pain (odds ratio = 0.92; p&#x2009;<&#x2009;0.001). No significant causal associations were detected for appendicular lean mass in either direction (all p&#x2009;>&#x2009;0.05).ConclusionThis study provides genetic evidence supporting potential causal links between chronic pain and key phenotypic components of sarcopenia.

Humans