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Not All Is Lost: Old Adults Retain Flexibility in Motor Behaviour during Sit-to-Stand

机译:并不是所有人都迷失了:老年人在坐着不动的过程中仍能保持运动行为的灵活性

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摘要

Sit-to-stand is a fundamental activity of daily living, which becomes increasingly difficult with advancing age. Due to severe loss of leg strength old adults are required to change the way they rise from a chair and maintain stability. Here we examine whether old compared to young adults differently prioritize task-important performance variables and whether there are age-related differences in the use of available motor flexibility. We applied the uncontrolled manifold analysis to decompose trial-to-trial variability in joint kinematics into variability that stabilizes and destabilizes task-important performance variables. Comparing the amount of variability stabilizing and destabilizing task-important variables enabled us to identify the variable of primary importance for the task. We measured maximal isometric voluntary force of three muscle groups in the right leg. Independent of age and muscle strength, old and young adults similarly prioritized stability of the ground reaction force vector during sit-to-stand. Old compared to young adults employed greater motor flexibility, stabilizing ground reaction forces during sit-to-sand. We concluded that freeing those degrees of freedom that stabilize task-important variables is a strategy used by the aging neuromuscular system to compensate for strength deficits.
机译:静坐是日常生活的一项基本活动,随着年龄的增长,坐着变得越来越困难。由于腿部力量严重丧失,老年人需要改变他们从椅子上站起来的方式并保持稳定性。在这里,我们检查与年轻人相比,老年人是否对任务重要的性能变量进行了不同的优先排序,并且在可用运动灵活性的使用方面是否存在与年龄相关的差异。我们应用了不受控制的流形分析,将关节运动学中的试验到试验的可变性分解为稳定和不稳定的重要任务性能变量的可变性。比较稳定和破坏任务重要变量的可变性,可以使我们确定对任务最重要的变量。我们测量了右腿三个肌肉群的最大等距自愿力量。不受年龄和肌肉力量的影响,老年人和年轻人在坐着站立时同样优先考虑地面反作用力矢量的稳定性。与年轻人相比,老年人具有更大的运动灵活性,可在坐沙时稳定地面反作用力。我们得出的结论是,释放那些稳定任务重要变量的自由度是衰老的神经肌肉系统用来补偿力量不足的一种策略。

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