Human Motion Laboratory, MORE Foundation, 18444 N 25th Ave., Suite 110, Phoenix, AZ, 85023, USA.
Center for Research in Human Movement Variability, Department of Biomechanics, University of Nebraska at Omaha, 6160 University Drive South, Omaha, NE, 68182-0860, USA.
Med Biol Eng Comput. 2022 Mar;60(3):863-873. doi: 10.1007/s11517-022-02504-4. Epub 2022 Feb 9.
Maintenance of postural control is a complex task that requires the integration of different sensory-motor processes. To improve postural control, balance training is often implemented using unstable surfaces. Little is known, however, about how different surfaces compare in terms of postural control strategy. Non-linear dynamical system analysis, like recurrent quantification analysis (RQA) applied to the center of pressure (CoP) trajectory, represents a useful tool in this respect. The aim of this study is to investigate the effects of different unstable supports on the CoP trajectory through a complementary approach based on linear and non-linear analyses. Seventeen healthy adults performed barefoot single-leg balance trials on a force plate and on three different balance training devices (soft disc, foam pad, and pillow). Sets of parameters were extracted from the CoP trajectories using classical stabilometric analysis (sway path, mean velocity, root mean square) and RQA (percent recurrence and determinism, maximum line length, entropy). Both classical and RQA analyses highlighted significant differences between stable (force plate) and unstable conditions (p < 0.001). Conversely, only classical stabilometric parameters showed significant differences among the considered balance training devices, indicating that the different characteristics of the devices do not influence the dynamic/temporal structure of the CoP trajectory. Analysis of the center of pressure trajectory during single-leg standing on three different balance training devices and on a rigid surface using both linear and non-linear techniques.
姿势控制的维持是一项复杂的任务,需要整合不同的感觉运动过程。为了改善姿势控制,通常使用不稳定的表面进行平衡训练。然而,关于不同表面在姿势控制策略方面的比较,我们知之甚少。非线性动力系统分析,如应用于重心(CoP)轨迹的递归量化分析(RQA),在这方面是一种有用的工具。本研究的目的是通过基于线性和非线性分析的补充方法,研究不同不稳定支撑对 CoP 轨迹的影响。17 名健康成年人在力板上和三种不同的平衡训练设备(软盘、泡沫垫和枕头)上进行赤脚单腿平衡试验。使用经典稳定分析(摆动路径、平均速度、均方根)和 RQA(复发百分比和确定性、最大线长、熵)从 CoP 轨迹中提取参数集。经典和 RQA 分析都强调了稳定(力板)和不稳定条件(p<0.001)之间的显著差异。相反,只有经典稳定参数在考虑的平衡训练设备之间显示出显著差异,这表明设备的不同特征不会影响 CoP 轨迹的动态/时间结构。使用线性和非线性技术分析在三种不同的平衡训练设备和刚性表面上单腿站立时的重心轨迹。