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一种仪器化不平地形跑步机的设计与验证

Design and Validation of an Instrumented Uneven Terrain Treadmill.

作者信息

Voloshina Alexandra S, Ferris Daniel P

机构信息

1 University of Michigan.

出版信息

J Appl Biomech. 2018 Jun 1;34(3):236-239. doi: 10.1123/jab.2016-0322. Epub 2018 Jun 11.

Abstract

Studying human and animal locomotion on an uneven terrain can be beneficial to basic science and applied studies for clinical and robotic applications. Traditional biomechanical analysis of human locomotion has often been limited to laboratory environments with flat, smooth runways and treadmills. The authors modified a regular exercise treadmill by attaching wooden blocks to the treadmill belt to yield an uneven locomotion surface. To ensure that these treadmill modifications facilitated biomechanical measurements, the authors compared ground reaction force data collected while a subject ran on the modified instrumented treadmill with a smooth surface with data collected using a conventional instrumented treadmill. Comparisons showed only minor differences. These results suggest that adding an uneven surface to a modified treadmill is a viable option for studying human or animal locomotion on an uneven terrain. Other types of surfaces (eg, compliant blocks) could be affixed in a similar manner for studies on other types of locomotion surfaces.

摘要

研究人类和动物在不平坦地形上的运动,对于基础科学以及临床和机器人应用的应用研究都可能有益。传统的人类运动生物力学分析通常局限于具有平坦、光滑跑道和跑步机的实验室环境。作者通过在跑步机皮带上附着木块,对常规运动跑步机进行了改装,以产生不平坦的运动表面。为确保这些跑步机改装便于进行生物力学测量,作者将受试者在改装后的带有光滑表面的仪器化跑步机上跑步时收集的地面反作用力数据,与使用传统仪器化跑步机收集的数据进行了比较。比较结果显示差异很小。这些结果表明,在改装后的跑步机上添加不平坦表面是研究人类或动物在不平坦地形上运动的可行选择。其他类型的表面(例如,柔性块)可以以类似方式固定,用于研究其他类型的运动表面。

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