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Arm swing in human walking: What is their drive?

机译:人类行走中的手臂摆动:他们的动力是什么?

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摘要

Although previous research has studied arm swing during walking, to date, it remains unclear what the contribution of passive dynamics versus active muscle control to arm swing is. In this study, we measured arm swing kinematics with 3D-motion analysis. We used a musculoskeletal model in OpenSim and generated dynamic simulations of walking with and without upper limb muscle excitations. We then compared arm swing amplitude and relative phase during both simulations to verify the extent to which passive dynamics contribute to arm swing. The results confirm that passive dynamics are partly responsible for arm swing during walking. However, without muscle activity, passive swing amplitude and relative phase decrease significantly (both p< 0.05), the latter inducing a more in-phase swing pattern of the arms. Therefore, we conclude that muscle activity is needed to increase arm swing amplitude and modify relative phase during human walking to obtain an out-phase movement relative to the legs.
机译:尽管以前的研究已经研究了步行过程中的手臂摆动,但到目前为止,仍不清楚被动动力学与主动肌肉控制对手臂摆动的贡献。在这项研究中,我们使用3D运动分析测量了手臂摆动运动学。我们在OpenSim中使用了肌肉骨骼模型,并在有和没有上肢肌肉刺激的情况下生成了行走的动态模拟。然后,我们在两个模拟过程中比较了手臂摆动幅度和相对相位,以验证被动动力学对手臂摆动的贡献程度。结果证实,被动动力是行走过程中手臂摆动的部分原因。但是,如果没有肌肉活动,被动摆动幅度和相对相位会显着降低(均p <0.05),后者会导致手臂的同相摆动模式更多。因此,我们得出结论,在人类行走过程中需要肌肉活动来增加手臂摆动幅度并修改相对相位以获得相对于腿的异相运动。

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