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The effects of ankle stiffness on mechanics and energetics of walking with added loads: a prosthetic emulator study

机译:脚踝僵硬对加重行走的力学和能量的影响:假肢仿真器研究

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摘要

Experimental setup. The prosthesis emulator is tethered to an off-board motor and controlled via a computer interfaced with MATLAB and Simulink. The desired stiffness can be entered into the software, which allows the ankle stiffness to be systematically varied during the dorsiflexion phase and push-off. The protocol tested five different prosthetic ankle stiffness (based on literature-values of human ankle stiffness) with and without a weighted vest (~ 30% of body mass). The participants wore a lift shoe on the contralateral leg
机译:实验装置。假体仿真器被束缚在车外马达上,并通过与MATLAB和Simulink相连的计算机进行控制。可以将所需的刚度输入到软件中,该软件可以在背屈阶段和下推过程中系统地改变踝关节的刚度。该方案测试了五种不同的假肢踝关节僵硬(基于人类踝关节僵硬的文献资料值),有或没有加重背心(约30%体重)。参与者在对侧腿上穿了一个升降鞋

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