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Leg joint synergy emerged from the body dynamics during walking

机译:在步行期间,腿部联合协同作用从身体动态出现

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Although leg joint trajectories during human walking show variance in each step it has been reported that the variance of the toe position is suppressed by joint synergy at some critical points to realize stable walking, e.g., at the moment when the toe passes through the nearest position from the ground during leg swing. Is such joint synergy generated by the central nervous system (CNS) or by the body dynamics given by the physical structure of our body? In this study, we analyzed the leg joint synergy in a passive walker by the Uncontrolled Manifold analysis, and compared the result with the synergy in human walking. The results show that in both of the passive walker and humans the joint synergy that suppresses the variance of the horizontal ankle position becomes large just after the take off of the ankle, and the joint synergy that suppresses the variance of the ankle height becomes large when the ankle passes just under the knee position. These results suggest that the above mentioned joint synergies observed in human walking might be due to the body dynamics. On the other hand, large joint synergy that suppresses the variance of the hip height at the end of the stance phase was observed only in human walking, which implies that this joint synergy is due to the CNS control. These results suggest that human utilizes joint synergy emerged from the body dynamics and the CNS adds control to form synergy at some critical points to adjust the foot position and stabilize walking.
机译:虽然人行道期间的腿部关节轨迹在每个步骤中的差异中,但据报道,在一些关键点处通过联合协同作用来抑制脚趾位置的方差,以实现稳定行走,例如脚趾通过最接近位置时在腿部摆动期间从地面。是由中枢神经系统(CNS)生成的这种联合协同作用,还是由我们身体的物理结构给出的身体动态?在这项研究中,我们分析了被动沃克腿关节协同由不受控制的集成块分析,并与人类行走的协同作用的结果。结果表明,在踝关节取出后,在两个被动步行者和人类中,抑制水平脚踝位置的方差变大,并且抑制脚踝高度方差的关节协同作用变大踝关节在膝盖位置下方。这些结果表明,在人行道中观察到的上述联合协同作用可能是由于身体动态。另一方面,仅在人行道上观察到抑制髋部阶段末端的臀部高度方差的大关节协同作用,这意味着该联合协同作用是由于CNS控制。这些结果表明,人类利用来自身体动态的联合协同作用,CNS在一些关键点处添加控制来形成协同作用,以调整脚位置并稳定行走。

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