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跑步时在不同跑步机上的力测量。

Force measurements during running on different instrumented treadmills.

机构信息

Human Performance Laboratory, Faculty of Kinesiology, University of Calgary, Canada.

Human Performance Laboratory, Faculty of Kinesiology, University of Calgary, Canada.

出版信息

J Biomech. 2019 Feb 14;84:263-268. doi: 10.1016/j.jbiomech.2018.12.025. Epub 2018 Dec 23.

Abstract

One method to determine the forces produced during running is to conduct extensive kinematic and kinetic analysis. These analyses can be performed by having an individual perform repeated over-ground running trials or simply run continuously on an instrumented treadmill. The forces produced during over-ground running may not be the same as the forces during treadmill running and these differences could be attributed to a number of factors, including the design of the instrumented treadmill. The purpose of this paper was to determine whether there are differences in force measurements on different instrumented treadmill setups in comparison to over-ground running and to correct for any of these differences using a theoretical model. 11 participants ran on three different treadmills and performed over-ground running at 2.7, 3.6, and 4.5 m/s. Ground reaction forces were measured via force plates and an instrumented pressure insole. We found that the magnitude of the vertical ground reaction force differed between the three treadmills and over-ground running. The difference in ground reaction forces estimated by the pressure insole and the treadmill-force-plate system or instrumented treadmill can be explained by a three degree of freedom mechanical model of a person running on a treadmill and this model could potentially be used to correct for errors in force measurement from instrumented treadmills. The model included a force plate, a treadmill, and a wobbling mass with varying natural frequencies and damping characteristics, and constant masses. These findings provide researchers a method to correct forces from an instrumented treadmill set-up to determine a close approximation of the actual forces experienced by a participant during treadmill running.

摘要

一种确定跑步过程中产生的力的方法是进行广泛的运动学和动力学分析。这些分析可以通过让个体进行重复的地面跑步试验或在装有仪器的跑步机上连续跑步来完成。在地面上跑步时产生的力可能与在跑步机上跑步时产生的力不同,这些差异可能归因于许多因素,包括仪器化跑步机的设计。本文的目的是确定与地面跑步相比,在不同的仪器化跑步机设置下的力测量是否存在差异,并使用理论模型对这些差异进行修正。11 名参与者在三种不同的跑步机上跑步,并以 2.7、3.6 和 4.5 m/s 的速度进行地面跑步。地面反作用力通过力板和装有仪器的压力鞋垫进行测量。我们发现,三个跑步机和地面跑步之间的垂直地面反作用力的大小存在差异。压力鞋垫和跑步机力板系统或仪器化跑步机估计的地面反作用力之间的差异可以通过一个人在跑步机上跑步的三自由度机械模型来解释,并且该模型可以潜在地用于校正仪器化跑步机的力测量误差。该模型包括一个力板、一个跑步机和一个具有不同固有频率和阻尼特性以及恒定质量的摆动质量。这些发现为研究人员提供了一种从仪器化跑步机设置中校正力的方法,以确定参与者在跑步机跑步过程中实际经历的力的近似值。

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