Department of Kinesiology, Texas Christian University, Fort Worth, TX, 76129, United States.
Department of Kinesiology, Texas Christian University, Fort Worth, TX, 76129, United States.
Neurosci Lett. 2020 Oct 15;737:135334. doi: 10.1016/j.neulet.2020.135334. Epub 2020 Aug 27.
Upright postural control system exhibits dynamic behavior to produce flexible adaptations to a variety of internal and external perturbations. Understanding the range of postural adaptability in healthy individuals can index the overall state of the system and needs to be defined over various environmental and task constraints. The purpose of the current investigation was to understand the role of vision and support surface angle on the multiple time scales of control that maintain upright posture. Thirteen young, healthy adults performed quiet standing tasks on flat, inclined and declined support surfaces with either eyes open or closed. The variability of the anterior-posterior center of pressure (COP) trajectory was analyzed using linear (COP) and non-linear (multiscale entropy - MSE) approaches to index postural dynamics. Sway magnitude - COP - was greater in both sloped conditions compared to the flat support surface standing and with the removal of vision. Increased irregularity was revealed during the sloped conditions compared to flat surface standing with additional increases of COP complexity when vision was removed. Overall, a similar range of postural adaptability was revealed for both the singular and combined sensory manipulations suggesting limits to the degree of change of COP dynamics.
直立姿势控制系统表现出动态行为,以灵活适应各种内部和外部干扰。了解健康个体的姿势适应范围可以反映系统的整体状态,并且需要在各种环境和任务约束下进行定义。本研究的目的是了解视觉和支撑面角度在维持直立姿势的多个控制时间尺度上的作用。13 名年轻健康的成年人在平坦、倾斜和倾斜的支撑面上睁眼或闭眼进行安静站立任务。使用线性(COP)和非线性(多尺度熵-MSE)方法分析前-后中心压力(COP)轨迹的变异性,以指数姿势动力学。与在平坦支撑表面站立相比,在倾斜条件下,CO 的摆动幅度更大-站立时的压力和视觉缺失。与在平坦表面站立相比,倾斜条件下显示出更大的不规则性,并且当视觉缺失时,COP 复杂性增加。总体而言,对于单一和组合感觉操作,都揭示了类似的姿势适应性范围,这表明 COP 动力学变化程度存在限制。