首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >The balance recovery mechanisms against unexpected forward perturbation.
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The balance recovery mechanisms against unexpected forward perturbation.

机译:平衡恢复机制可防止意外的前摄干扰。

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摘要

Falls are one of the main concerns of the elderly. Proper postural adjustments to maintain balance involve the activation of appropriate muscles to produce force and to relocate the center of body mass (CoM). In this study, biomechanical aspects of dynamic postural responses against forward perturbations were experimentally determined by simultaneous measurements of joint angles and EMG activations. Thirteen young and healthy volunteers took turns standing on a flat platform, and were directed to move in the forward direction by an AC servo-motor set at two different speeds (0.1 and 0.2 m/s). Joint motions were recorded, and they followed the sequence of ankle dorsiflexion, knee flexion, and then hip flexion during the later acceleration phase (AP) in order to maintain postural balance against forward perturbation. Tibialis anterior for the ankle dorsiflexion and biceps femoris for the knee flexion were activated during the second half of the AP as the primary muscles to recover balance. In addition, gastrocnemius, which was related to ankle plantarflexion, and rectus femoris, which was related to knee extension, were activated to maintain balance. Movements of the center of plantar pressure and ground reaction forces in fast-speed perturbation were significantly larger than those in slow-speed perturbation. As a result, the ankle strategy was used for slow-speed perturbation, but the mixed strategy consisting of both ankles and hip were used for fast-speed perturbation.
机译:跌倒是老年人的主要担忧之一。适当的姿势调整以保持平衡需要激活适当的肌肉以产生力量并重新定位体重中心(CoM)。在这项研究中,通过同时测量关节角度和EMG激活来实验确定动态姿势响应前向摄动的生物力学方面。 13名年轻健康的志愿者站在平坦的平台上轮流站立,并被设置为两种不同速度(0.1和0.2 m / s)的交流伺服电机指示向前移动。记录关节运动,并在随后的加速阶段(AP)遵循脚踝背屈,膝关节屈曲,然后髋关节屈曲的顺序,以保持姿势平衡,防止前向摄动。在AP的后半部分,作为胫骨的主要肌群激活了踝关节前屈的胫骨前肌和膝关节屈曲的股二头肌。此外,与脚踝plant屈有关的腓肠肌和与膝盖伸展有关的股直肌被激活以维持平衡。高速扰动时足底压力中心和地面反作用力的运动明显大于慢速扰动时。结果,将脚踝策略用于慢速摄动,但将由脚踝和臀部组成的混合策略用于快速摄动。

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