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Development of a novel six-axis force/moment sensor attached to a prosthetic limb for the unrestrained gait measurement

机译:开发新颖的六轴力/时刻传感器,其附着于假肢测量的假肢

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Since the number of trans-femoral amputees has increased by industrial or traffic accidents in modern society, a prosthetic limb has been required. In this case, those amputees must regain moving pattern by efficient gait training using load conditions on a prosthetic limb as quantitative evaluation indices. However, conventional gait training systems cannot measure long continuous walking motions. In this paper, a novel six-axis force/moment sensor, which is attached to a prosthetic limb for the unrestrained gait measurement, is developed. As a result of applying response surface method and desirability function, optimum design variables to reduce interference components are obtained. Finally, characteristics test by applying optimum design variables is performed and the effectiveness of the developed sensor is validated.
机译:由于现代社会中的工业或交通事故增加了跨性股骨的数量,因此需要一个假肢肢体。在这种情况下,那些令人愉快的人必须通过在假肢肢体上的高效步态训练作为定量评估指标,通过高效的步态训练来重新获得移动模式。然而,传统的步态训练系统无法测量长期的连续行走运动。在本文中,开发了一种新颖的六轴力/时刻传感器,其连接到用于无拘无束的步态测量的假肢测量。作为应用响应面方法和期望函数的结果,获得了降低干扰分量的最佳设计变量。最后,执行施加最佳设计变量的特性测试,验证了发达传感器的有效性。

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