骨骼肌质量和力量的决定因素和上限遗传力。

Wim Huygens, Martine A Thomis, Maarten W Peeters, Robert F Vlietinck, Gaston P Beunen
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引用次数: 74

摘要

本研究的目的是估计遗传和环境对骨骼肌质量和力量变化的影响。此外,通过逐步多元回归分析了重要的影响因素。在一个大型(N = 748)兄弟姐妹样本中,年龄为24.3 +/- 4.5岁,通过QTDT的方差成分法估计了上限遗传力(t2)作为遗传和共享环境变异性占总表型变异性的比例。在Cybex等速测力仪上,膝关节、躯干和肘部的最大等距强度测量值的t2(82%至96%)高于同心圆强度(63%至87%)。肌肉质量指标显示传输量非常高(>90%),而肥胖的t2较低(
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Determinants and upper-limit heritabilities of skeletal muscle mass and strength.

The purpose of this study was to estimate the genetic and environmental contribution to variation in skeletal muscle mass and strength. In addition, important determinants were analyzed by stepwise multiple regression. In a large (N = 748) sibling pair sample of young brothers, ages 24.3 +/- 4.5 years, upper-limit heritabilities (t2) were estimated as a proportion of genetic and shared environmental variability over total phenotypic variability by the variance components method in QTDT. Maximal isometric strength measures of knee, trunk, and elbow had higher t2 (82 to 96%) than concentric strength (63 to 87%) on Cybex isokinetic dynamometers. Indicators of muscle mass revealed very high transmissions (>90%) whereas t2 was lower for adiposity (<70%). Stepwise regression showed that fat-free mass was the primary determinant in knee and trunk strength (partial explained variance, R2 = 33-45%), but a local muscularity estimate (forearm circumference) was the main covariable for elbow strength (partial R2 = 18-39%). In this sample neither age nor physical activity, measured by the sport index of Baecke, appeared to be an important determinant of muscle mass or strength. These results show that maximal muscle strength and mass are highly transmissible and that muscle mass is the primary determinant of muscle strength.

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