van Doornik Johan, Sinkjaer Thomas
Division of Child Neurology and Movement Disorders, Stanford University, Stanford, CA 94305-5235, USA.
IEEE Trans Biomed Eng. 2007 Sep;54(9):1696-702. doi: 10.1109/TBME.2007.894949.
A hydraulically actuated platform with 4-degrees of freedom (4-DOF) was designed to be able to apply velocity- or acceleration-controlled floor surface perturbations to freely walking human subjects. The apparatus was required to provide velocity-controlled translational perturbations over the floor surface, rotational perturbations about the ankle joint, and acceleration-controlled vertical translational perturbations. The apparatus was physically constructed, and tested by both measurements of dynamics and repeatability. Crossover of movement from one DOF to another was shown to be less than 1 mm or 0.5 degrees for all desired perturbations. Repeated perturbations were nearly identical with a standard deviation of less than 0.2 mm over translational axes. The application of the platform to human gait research was demonstrated with a protocol of midstance phase perturbations (n=8). For this, the platform controller was programmed to randomly select one out of three conditions: (1) no movement (control); (2) upward perturbation of 0.8 g, 50 mm, 300 ms after heel contact; (3) downward perturbation of 0.8 g, 50 mm, 300 ms after heel contact. In total, 90 trials (3 conditions x 30 repetitions) were recorded for each subject. By singling out the SOL EMG and normalizing and averaging over the subject population, it was shown that the upward and downward perturbations elicited at least two distinctive stereotypical reflex responses in the ankle extensors, opposite in sign. All subjects reported comfort with the apparatus and nobody fell.
设计了一种具有4个自由度(4-DOF)的液压驱动平台,以便能够对自由行走的人体受试者施加速度或加速度控制的地面表面扰动。该装置需要在地面表面提供速度控制的平移扰动、围绕踝关节的旋转扰动以及加速度控制的垂直平移扰动。该装置已实际构建,并通过动力学测量和重复性测试。对于所有期望的扰动,从一个自由度到另一个自由度的运动交叉显示小于1毫米或0.5度。重复扰动几乎相同,平移轴上的标准偏差小于0.2毫米。通过一个中期阶段扰动协议(n = 8)展示了该平台在人体步态研究中的应用。为此,平台控制器被编程为从三种情况中随机选择一种:(1)无运动(对照);(2)足跟接触后300毫秒施加0.8g、50毫米的向上扰动;(3)足跟接触后300毫秒施加0.8g、50毫米的向下扰动。每个受试者总共记录了90次试验(3种情况×30次重复)。通过挑选出比目鱼肌肌电图并在受试者群体中进行归一化和平均,结果表明向上和向下的扰动在踝关节伸肌中引发了至少两种独特的典型反射反应,其信号相反。所有受试者都表示对该装置感到舒适,且无人摔倒。