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Summary of Human Ankle Mechanical Impedance During Walking

机译:步行过程中人脚踝机械阻抗的概述

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摘要

The human ankle joint plays a critical role during walking and understanding the biomechanical factors that govern ankle behavior and provides fundamental insight into normal and pathologically altered gait. Previous researchers have comprehensively studied ankle joint kinetics and kinematics during many biomechanical tasks, including locomotion; however, only recently have researchers been able to quantify how the mechanical impedance of the ankle varies during walking. The mechanical impedance describes the dynamic relationship between the joint position and the joint torque during perturbation, and is often represented in terms of stiffness, damping, and inertia. The purpose of this short communication is to unify the results of the first two studies measuring ankle mechanical impedance in the sagittal plane during walking, where each study investigated differing regions of the gait cycle. Rouse et al. measured ankle impedance from late loading response to terminal stance, where Lee et al. quantified ankle impedance from pre-swing to early loading response. While stiffness component of impedance increases significantly as the stance phase of walking progressed, the change in damping during the gait cycle is much less than the changes observed in stiffness. In addition, both stiffness and damping remained low during the swing phase of walking. Future work will focus on quantifying impedance during the “push off” region of stance phase, as well as measurement of these properties in the coronal plane.
机译:人体踝关节在行走过程中以及了解控制踝关节行为的生物力学因素以及为正常步态和病理性步态提供基本洞察力方面起着至关重要的作用。以前的研究人员已经在许多生物力学任务(包括运动)中全面研究了踝关节动力学和运动学。然而,直到最近,研究人员才能够量化脚踝在行走过程中的机械阻抗如何变化。机械阻抗描述了扰动期间关节位置和关节扭矩之间的动态关系,并且通常以刚度,阻尼和惯性来表示。这种简短交流的目的是统一前两项研究在步行过程中测量矢状面踝机械阻抗的结果,其中每项研究都研究了步态周期的不同区域。 Rouse等。 Lee等人测量了从晚期负荷反应到末端姿势的脚踝阻抗。从摆动前到早期负荷反应的量化踝阻抗。尽管阻抗的刚度分量随步态阶段的进行而显着增加,但步态周期中阻尼的变化远小于刚度的变化。另外,在步行的摆动阶段中,刚度和阻尼都保持较低。未来的工作将侧重于在姿态阶段的“下推”区域内量化阻抗,以及在冠状平面内测量这些特性。

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