Fortune Emma, Crenshaw Jeremy, Lugade Vipul, Kaufman Kenton R
Motion Analysis Laboratory, Division of Orthopedic Research, Charlton North L-110L, Mayo Clinic, Rochester, MN 55905, USA.
Motion Analysis Laboratory, Division of Orthopedic Research, Charlton North L-110L, Mayo Clinic, Rochester, MN 55905, USA; Department of Kinesiology and Applied Physiology, University of Delaware, Newark, DE 19713, USA.
Med Eng Phys. 2017 Apr;42:99-104. doi: 10.1016/j.medengphy.2017.01.002. Epub 2017 Feb 1.
With the increasing use of instrumented force treadmills in biomechanical research, it is imperative that the validity of center of pressure (COP) measurements is established. The study aims were to compare an instrumented treadmill's static-belt COP accuracy to that of a floor-embedded platform, develop a novel method to quantify dynamic-belt COP accuracy with controlled precision and perform an initial investigation of how dynamic COP accuracy changes with weight and velocity. Static COP accuracy was assessed by applying a force while moving a rigid rod in a circular clockwise motion at nine positions of interest on the two treadmill and two ground-embedded force plates. Dynamic COP accuracy was assessed for weights (68.0, 102.1, and 136.1kg), applied through a ball bearing of 2.54cm circumference, with peak treadmill belt speeds of 0.5, 0.75, and 1.0m/s. COP accuracy was assessed relative to motion capture marker trajectories. Statically, treadmill COP error was similar to that of the ground-embedded force plates and that reported for other treadmills. Dynamically, COP error appeared to vary systematically with weight and velocity and in the case of anteroposterior COP error, shear force, although testing with a larger number of weights and velocities is needed to fully define the relationship. This novel method can be used to assess any instrumented treadmill's dynamic COP accuracy with controlled precision.
随着仪器化测力跑步机在生物力学研究中的使用日益增加,确定压力中心(COP)测量的有效性变得至关重要。本研究的目的是比较仪器化跑步机的静态皮带COP精度与地面嵌入式平台的精度,开发一种新方法来精确量化动态皮带COP精度,并初步研究动态COP精度如何随体重和速度变化。通过在两台跑步机和两个地面嵌入式测力板上的九个感兴趣位置以顺时针方向做圆周运动移动刚性杆时施加力来评估静态COP精度。对于体重(68.0、102.1和136.1千克),通过周长为2.54厘米的滚珠轴承施加,跑步机皮带峰值速度为0.5、0.75和1.0米/秒,评估动态COP精度。相对于运动捕捉标记轨迹评估COP精度。在静态情况下,跑步机COP误差与地面嵌入式测力板的误差以及其他跑步机报告的误差相似。在动态情况下,COP误差似乎随体重和速度系统变化,对于前后向COP误差、剪切力而言,尽管需要用更多的体重和速度进行测试以充分确定这种关系。这种新方法可用于以可控精度评估任何仪器化跑步机的动态COP精度。