Chen Bing, Lee Yun-Ju, Aruin Alexander S
PhD Program in Rehabilitation Sciences, College of Applied Health Sciences, University of Illinois at Chicago, Chicago, IL, USA.
Department of Physical Therapy (MC 898), University of Illinois at Chicago, 1919 W. Taylor St., Chicago, IL, 60612, USA.
Exp Brain Res. 2016 Nov;234(11):3193-3201. doi: 10.1007/s00221-016-4717-2. Epub 2016 Jul 15.
We investigated motor control perspectives of coordinating maintenance of posture and application of grip force when holding an object and being perturbed. Ten subjects stood on the force platform holding an instrumented object in their dominant hand and were exposed to an external perturbation applied to their shoulders. Task demands were manipulated by positioning a slippery cap on top of the instrumented object. Grip force applied to the object, the object acceleration and the center of pressure (COP) were recorded and analyzed during the time intervals typical for the anticipatory (APA) and compensatory (CPA) components of postural control. Onsets of grip force were seen before the onsets of the COP displacement and initiation of movements of the handheld object during the APA phase of postural control, while the onsets of maximum grip force preceded the maximum COP displacement during the CPA phase. When the task demands increased by holding a handheld object with the slippery cap, subjects tended to generate grip force earlier and of a smaller magnitude; also, the COP displacement in the APA phase was smaller as compared to holding a handheld object only. The outcome provides a foundation for future studies of maintenance of vertical posture in people with impairments of balance and grip force control when holding an object and being perturbed.
我们研究了在握持物体并受到干扰时,协调姿势维持和握力施加的运动控制观点。十名受试者站在测力平台上,用优势手握住一个装有仪器的物体,并受到施加在其肩部的外部干扰。通过在装有仪器的物体顶部放置一个滑盖来操纵任务要求。在姿势控制的预期(APA)和补偿(CPA)成分的典型时间间隔内,记录并分析施加在物体上的握力、物体加速度和压力中心(COP)。在姿势控制的APA阶段,握力的起始出现在COP位移起始和手持物体运动开始之前,而在CPA阶段,最大握力的起始先于最大COP位移。当通过用滑盖握持手持物体来增加任务要求时,受试者倾向于更早地产生握力且握力大小更小;此外,与仅握持手持物体相比,APA阶段的COP位移更小。该结果为未来研究在握持物体并受到干扰时,平衡和握力控制受损的人维持垂直姿势提供了基础。