Kram R, Griffin T M, Donelan J M, Chang Y H
Department of Integrative Biology, University of California, Berkeley, California 94720-3140, USA.
J Appl Physiol (1985). 1998 Aug;85(2):764-9. doi: 10.1152/jappl.1998.85.2.764.
We constructed a force treadmill to measure the vertical, horizontal and lateral components of the ground-reaction forces (Fz, Fy, Fx, respectively) and the ground-reaction force moments (Mz, My, Mx), respectively exerted by walking and running humans. The chassis of a custom-built, lightweight (90 kg), mechanically stiff treadmill was supported along its length by a large commercial force platform. The natural frequencies of vibration were >178 Hz for Fz and >87 Hz for Fy, i.e., well above the signal content of these ground-reaction forces. Mechanical tests and comparisons with data obtained from a force platform runway indicated that the force treadmill recorded Fz, Fy, Mx and My ground-reaction forces and moments accurately. Although the lowest natural frequency of vibration was 88 Hz for Fx, the signal-to-noise ratios for Fx and Mz were unacceptable. This device greatly decreases the time and laboratory space required for locomotion experiments and clinical evaluations. The modular design allows for independent use of both treadmill and force platform.
我们构建了一台测力跑步机,用于测量行走和跑步的人分别施加的地面反作用力的垂直、水平和横向分量(分别为Fz、Fy、Fx)以及地面反作用力矩(Mz、My、Mx)。一台定制的、轻便的(90千克)、机械刚性的跑步机底盘,在其长度方向上由一个大型商用测力平台支撑。Fz的振动固有频率>178赫兹,Fy的振动固有频率>87赫兹,即远高于这些地面反作用力的信号频率成分。机械测试以及与从测力平台跑道获得的数据进行的比较表明,测力跑步机能够准确记录Fz、Fy、Mx和My地面反作用力及力矩。尽管Fx的最低振动固有频率为88赫兹,但Fx和Mz的信噪比不可接受。该设备极大地减少了运动实验和临床评估所需的时间和实验室空间。模块化设计允许跑步机和测力平台独立使用。