首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Bone, muscle, and physical activity: structural equation modeling of relationships and genetic influence with age.
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Bone, muscle, and physical activity: structural equation modeling of relationships and genetic influence with age.

机译:骨骼,肌肉和体育活动:与年龄的关系和遗传影响的结构方程模型。

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Correlations among bone strength, muscle mass, and physical activity suggest that these traits may be modulated by each other and/or by common genetic and/or environmental mechanisms. This study used structural equation modeling (SEM) to explore the extent to which select genetic loci manifest their pleiotropic effects through functional adaptations commonly referred to as Wolff's law. Quantitative trait locus (QTL) analysis was used to identify regions of chromosomes that simultaneously influenced skeletal mechanics, muscle mass, and/or activity-related behaviors in young and aged B6xD2 second-generation (F(2)) mice of both sexes. SEM was used to further study relationships among select QTLs, bone mechanics, muscle mass, and measures of activity. The SEM approach provided the means to numerically decouple the musculoskeletal effects of mechanical loading from the effects of other physiological processes involved in locomotion and physical activity. It was found that muscle mass was a better predictor of bone mechanics in young females, whereas mechanical loading was a better predictor of bone mechanics in older females. An activity-induced loading factor positively predicted the mechanical behavior of hindlimb bones in older males; contrarily, load-free locomotion (i.e., the remaining effects after removing the effects of loading) negatively predicted bone performance. QTLs on chromosomes 4, 7, and 9 seem to exert some of their influence on bone through actions consistent with Wolff's Law. Further exploration of these and other mechanisms through which genes function will aid in development of individualized interventions able to exploit the numerous complex pathways contributing to skeletal health.
机译:骨强度,肌肉质量和体育活动之间的相关性表明,这些性状可能彼此之间和/或通过共同的遗传和/或环境机制受到调节。这项研究使用结构方程模型(SEM)来探索选择基因座通过功能适应(通常称为Wolff定律)表现多效性的程度。定量性状基因座(QTL)分析用于鉴定同时影响骨骼和性别,年轻和老年B6xD2第二代(F(2))小鼠骨骼肌力学,肌肉质量和/或活动相关行为的染色体区域。 SEM用于进一步研究所选QTL,骨骼力学,肌肉质量和活动度之间的关系。 SEM方法提供了一种手段,可以将机械负载的肌肉骨骼效应与运动和身体活动中涉及的其他生理过程的影响从数值上分离。研究发现,肌肉质量是年轻女性更好的骨力学指标,而机械负荷是老年女性更好的骨力学指标。活动引起的负荷因子积极预测年长男性的后肢骨骼的机械行为。相反,无负荷运动(即去除负荷影响后的其余影响)会对骨骼性能产生负面影响。染色体4、7和9上的QTL似乎通过与沃尔夫定律一致的作用而对骨骼产生某些影响。对基因功能的这些和其他机制的进一步探索将有助于开发个性化的干预措施,从而能够利用有助于骨骼健康的众多复杂途径。

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