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A micromechanical muscle model for determining the impact of motor unit fiber clustering on force transmission in aging skeletal muscle

机译:用于确定运动单位纤维聚集对老化骨骼肌中力传递的影响的微机械肌肉模型

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摘要

This study used a micromechanical finite element muscle model to investigate the effects of the redistribution of spatial activation patterns in young and old muscle. The geometry consisted of a bundle of 19 active muscle fibers encased in endomysium sheets, surrounded by passive tissue to model a fascicle. Force was induced by activating combinations of the 19 active muscle fibers. The spacial clustering of muscle fibers modeled in this study showed unbalanced strains suggesting tissue damage at higher strain levels may occur during higher levels of activation and/or during dynamic conditions. These patterns of motor unit remodeling are one of the consequences of motor unit loss and reinnervation associated with aging. The results did not reveal evident quantitative changes in force transmission between old and young adults, but the patterns of stress and strain distribution were affected, suggesting an uneven distribution of the forces may occur within the fascicle that could provide a mechanism for muscle injury in older muscle.
机译:这项研究使用微机械有限元肌肉模型来研究空间激活模式在年轻人和老年人肌肉中重新分布的影响。几何形状由包裹在子宫内膜中的19条活性肌纤维束组成,周围由被动组织包围以模拟束。通过激活19条活性肌纤维的组合来诱发力量。在这项研究中建模的肌肉纤维的空间聚集表明,不平衡的应变表明较高的应变水平可能在较高的激活水平和/或动态条件下发生组织损伤。运动单元重塑的这些模式是运动单元丢失和与衰老相关的神经支配的后果之一。结果并未显示老年人和年轻人之间力传递的明显定量变化,但应力和应变分布的模式受到影响,表明束内可能发生力的不均匀分布,这可能为老年人的肌肉损伤提供了机制肌肉。

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