首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Age-related deficit in dynamic stability control after forward falls is affected by muscle strength and tendon stiffness
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Age-related deficit in dynamic stability control after forward falls is affected by muscle strength and tendon stiffness

机译:前倾后动态稳定性控制中与年龄有关的缺陷会受到肌肉力量和肌腱僵硬的影响

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The purpose of the work was to determine whether the age-related muscle weakness diminishes older adults' ability to use mechanisms responsible for maintaining dynamic stability after forward falls. Nine older and nine younger adults participated in this study. To analyse the capacities of the leg-extensor muscle-tendon units, all subjects performed isometric maximal voluntary plantarflexion and knee extension contractions on a dynamometer. The elongation of the gastrocnemius medialis and the vastus lateralis tendon and aponeuroses during isometric contraction was examined by ultrasonography. Recovery behaviour was determined after a sudden fall from two forward-inclined lean angles. Compared to older adults, younger adults had higher muscle strength and tendon stiffness. Younger adults created a higher margin of stability compared to older, independent of perturbation intensity. The main mechanism improving the margin of dynamic stability was the increase of the base of support. The results, further, demonstrated that the locomotion strategy employed before touchdown affects the stability of the stance phase and that muscle strength and tendon stiffness contributed significantly to stability control. We concluded that, to reduce the risk of falls, older individuals may benefit from muscle-tendon unit strengthening programs as well as from interventions exercising the mechanisms responsible for dynamic stability. (C) 2007 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是确定与年龄有关的肌肉无力是否会削弱老年人使用前向跌倒后负责维持动态稳定性的机制的能力。九名老年人和九名年轻人参加了这项研究。为了分析腿伸肌腱单位的能力,所有受试者均在测力计上进行了等距最大自愿足底屈曲和膝盖伸展收缩。通过超声检查等轴测收缩期间腓肠肌内侧和股外侧肌腱和腱膜的伸长。从两个向前倾斜的倾斜角度突然下降后确定恢复行为。与老年人相比,年轻人的肌肉力量和肌腱僵硬度更高。与扰动强度无关,与成年人相比,年轻人具有更高的稳定性。提高动力稳定性裕度的主要机制是增加支撑基础。结果进一步证明,在着陆之前采用的运动策略会影响姿势阶段的稳定性,而肌肉力量和肌腱僵硬度则对稳定性控制起了重要作用。我们得出的结论是,为了降低跌倒的风险,老年人可以受益于肌腱单元强化计划以及行使负责动态稳定性的机制的干预措施。 (C)2007 Elsevier Ltd.保留所有权利。

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