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一种用于测量人类步态极限时地面反作用力的高速跑步机的设计与测试。

Design and testing of a high-speed treadmill to measure ground reaction forces at the limit of human gait.

作者信息

Bundle Matthew W, Powell Michael O, Ryan Laurence J

机构信息

Biomechanics Laboratory, Department of Health and Human Performance, University of Montana, Missoula, MT 59812, USA.

Locomotor Performance Laboratory, Department of Applied Physiology and Wellness, Southern Methodist University, 5538 Dyer Street, Dallas, TX 75206, USA.

出版信息

Med Eng Phys. 2015 Sep;37(9):892-7. doi: 10.1016/j.medengphy.2015.04.009. Epub 2015 Jul 2.

Abstract

Investigations focused on the gait and physiological limits of human speed have been on-going for more than a century. However, due to measurement limitation a kinetic understanding of the foot-ground collision and how these dynamics differ between individuals to confer speed and limit gait has only recently begun to come forth. Therefore, we designed and tested an instrumented high-speed force treadmill to measure the forces occurring at the limits of human performance. The treadmill was designed to maximize flexural stiffness and natural frequency by using a honeycomb sandwich panel as the bed surface and a flexible drive shaft between the drive roller and servo motor to reduce the mass of the supported elements which contribute to the system's response frequency. The functional performance of the force treadmill met or exceeded the measurement criteria established for ideal force plates: high natural frequency (z-axis = 113 Hz), low crosstalk between components of the force (Fx/Fz = 0.0020[SD = 0.0010]; Fy/Fz = 0.0016[SD = 0.0003]), a linear response (R(2) > 0.999) for loading with known weights (range: 44-3857 N), and an accuracy of 2.5[SD = 1.7] mm and 2.8[SD = 1.5] mm in the x and y-axes, respectively, for the point of force application. In dynamic testing at running speeds up to 10 m s(-1), the measured durations and magnitudes of force application were similar between the treadmill and over-ground running using a force platform. This design provides a precise instrumented treadmill capable of recording multi-axis ground reaction forces applied during the foot ground contacts of the fastest men and animals known to science.

摘要

对人类步态和速度生理极限的研究已经持续了一个多世纪。然而,由于测量限制,对足部与地面碰撞的动力学理解以及个体之间这些动力学差异如何赋予速度和限制步态的认识直到最近才开始出现。因此,我们设计并测试了一种仪器化的高速测力跑步机,以测量人类运动极限时产生的力。该跑步机的设计通过使用蜂窝夹芯板作为床面以及在驱动滚筒和伺服电机之间使用柔性驱动轴来最大化弯曲刚度和固有频率,以减少有助于系统响应频率的支撑部件的质量。测力跑步机的功能性能达到或超过了为理想测力板设定的测量标准:高固有频率(z轴 = 113 Hz),力分量之间的串扰低(Fx/Fz = 0.0020[标准差 = 0.0010];Fy/Fz = 0.0016[标准差 = 0.0003]),对于已知重量(范围:44 - 3857 N)的加载具有线性响应(R(2) > 0.999),并且力作用点在x轴和y轴上的精度分别为2.5[标准差 = 1.7] mm和2.8[标准差 = 1.5] mm。在高达10 m s(-1)的跑步速度下进行动态测试时,跑步机上测量的力施加持续时间和大小与使用测力平台的地面跑步相似。这种设计提供了一种精确的仪器化跑步机,能够记录科学界已知的最快人类和动物在足部与地面接触期间施加的多轴地面反作用力。

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