Oates A R, Patla A E, Frank J S, Greig M A
Kinesiology Department, University of Waterloo, 200 University Ave. W., Waterloo, Ontario N2L 3G1, Canada.
J Neurophysiol. 2005 Jan;93(1):64-70. doi: 10.1152/jn.00423.2004. Epub 2004 Aug 4.
There are three common ways by which to successfully terminate gait: decreased acceleration of whole-body center of mass (COM) through a flexor synergy in the trail leg, increased deceleration of whole-body COM through an extensor synergy in the front limb, and an energy/momentum transfer to dissipate any remaining momentum if the first two strategies are unsuccessful. Healthy individuals were asked to stop on a slippery surface while we examined their unexpected response to the slippery surface. Kinetic data from the forceplates revealed lower braking forces in the slip trials compared with normal gait-termination trials. Subjects were unable to control their center of pressure (COP) to manipulate the COM as revealed by increased deviations and maximum absolute ranges of COP movement. Subject COM deviated farther in both horizontal planes and lowered further during the slip compared with normal gait-termination trials. Arm movements were effective in dissipating forward COM movement. In addition, there likely was a transfer of forward to lateral momentum to stop forward progression. All recorded muscle activity in the lower limbs and back increased during the slip to provide support to the lower limbs and correct upright balance. The trailing limb shortened its final step to provide support to the lowering COM. The balance-correction response seen here resembles previous reactions to perturbations during locomotion suggesting there is a generalized strategy employed by the nervous system to correct for disturbances and maintain balance.
通过支撑腿的屈肌协同作用降低全身质心(COM)的加速度,通过前肢的伸肌协同作用增加全身COM的减速度,以及在前两种策略不成功时通过能量/动量转移来消散任何剩余动量。我们要求健康个体在光滑表面上停下,同时检查他们对光滑表面的意外反应。来自测力台的动力学数据显示,与正常步态终止试验相比,滑倒试验中的制动力较低。正如COP运动的偏差增加和最大绝对范围所显示的那样,受试者无法控制其压力中心(COP)来操纵COM。与正常步态终止试验相比,受试者的COM在两个水平面上偏离更远,并且在滑倒期间进一步降低。手臂运动有效地消散了COM的向前运动。此外,很可能存在从前向动量到侧向动量的转移以停止向前推进。滑倒期间,下肢和背部记录的所有肌肉活动均增加,以为下肢提供支撑并纠正直立平衡。支撑腿缩短其最后一步以支撑下降的COM。此处看到的平衡校正反应类似于先前在运动过程中对扰动的反应,这表明神经系统采用了一种通用策略来纠正干扰并维持平衡。