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A neurobiological model of the recovery strategies from perturbed walking

机译:步行行走恢复策略的神经生物学模型

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This paper proposes a human mimetic neuro-musculo-skeletal model to simulate the recovery reactions from perturbations during walking. The computational model incorporates nonlinear viscoelastic muscular mechanics, supraspinal control of the center-of-mass, spinal pattern generator including muscle synergy network, spinal reflexes, and long-loop reflexes. Especially the long-loop reflexes specify recovery strategies based on the experimental observations [Schillings, A.M., van Wezel, B.M.H., Mulder, T.H., Duysen, J., 2000. Muscular responses and movement strategies during stumbling over obstacles. J. Neurophysiol. 83, 2093–2102; Eng, J.J., Winter, D.A., Patla, A.E., 1994. Strategies for recovery from a trip in early and late swing during human walking. Exp. Brain Res. 102, 339–349]. The model demonstrates two typical recovery strategies, i.e., elevating and lowering strategies against pulling over a swing leg. Sensed perturbation triggers a simple tonic pulse from the cortex. Depending on the swing phase, the tonic pulse activates a different compound of muscles over lower limbs. The compound induces corresponding recovery strategies. The reproduction of principal recovery behaviors may support the model's proposed functional and/or anatomical correspondence.
机译:本文提出了一种模仿人类的神经肌肉骨骼模型,以模拟步行过程中摄动的恢复反应。该计算模型包括非线性粘弹性肌肉力学,质心的脊柱上侧控制,包括肌肉协同网络,脊柱反射和长环反射的脊柱模式生成器。尤其是长环反射根据实验观察结果指定恢复策略[Schillings,A.M.,van Wezel,B.M.H.,Mulder,T.H.,Duysen,J.,2000。在绊倒障碍物期间的肌肉反应和运动策略。 J.神经生理学。 83,2093–2102; Eng,J.J.,Winter D.A.,Patla,A.E.,1994年。在人类行走过程中从早期和晚期挥杆旅行中恢复的策略。经验脑水库。 102,339–349]。该模型演示了两种典型的恢复策略,即,针对拉过摆动腿的升高和降低策略。感测到的扰动会触发来自皮层的简单滋补脉冲。根据摆动阶段,补品脉冲会激活下肢上不同的肌肉复合。该化合物诱导相应的恢复策略。主要恢复行为的再现可以支持模型提出的功能和/或解剖学对应关系。

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