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协同作用稳定控制变量空间中的垂直姿势。

Synergies Stabilizing Vertical Posture in Spaces of Control Variables.

机构信息

Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, Verona, Italy.

Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, Verona, Italy.

出版信息

Neuroscience. 2022 Sep 15;500:79-94. doi: 10.1016/j.neuroscience.2022.08.006. Epub 2022 Aug 8.

DOI:10.1016/j.neuroscience.2022.08.006
PMID:35952997
Abstract

In this study, we address the question: Can the central nervous system stabilize vertical posture in the abundant space of neural commands? We assume that the control of vertical posture is associated with setting spatial referent coordinates (RC) for the involved muscle groups, which translates into two basic commands, reciprocal and co-activation. We explored whether the two commands co-varied across trials to stabilize the initial postural state. Young, healthy participants stood quietly against an external horizontal load and were exposed to smooth unloading episodes. Linear regression between horizontal force and center of mass coordinate during the unloading phase was computed to define the intercept (RC) and slope (apparent stiffness, k). Hyperbolic regression between the intercept and slope across unloading episodes and randomization analysis both demonstrated high indexes of co-variation stabilizing horizontal force in the initial state. Higher co-variation indexes were associated with lower average k values across the participants suggesting destabilizing effects of muscle coactivation. Analysis of deviations in the {RC; k} space keeping the posture unchanged (motor equivalent) between two states separated by a voluntary quick body sway showed significantly larger motor equivalent deviations compared to non-motor equivalent ones. This is the first study demonstrating posture-stabilizing synergies in the space of neural control variables using various computational methods. It promises direct applications to studies of postural disorders and rehabilitation.

摘要

在这项研究中,我们探讨了一个问题:中枢神经系统能否在丰富的神经指令空间中稳定垂直姿势?我们假设垂直姿势的控制与为相关肌肉群设定空间参照坐标(RC)有关,这转化为两个基本命令,相互作用和共同激活。我们探索了这两个命令是否在试验中共同变化以稳定初始姿势。年轻、健康的参与者靠墙静立,然后受到平稳的卸载阶段的影响。在卸载阶段,计算水平力和质心坐标之间的线性回归,以定义截距(RC)和斜率(表观刚度,k)。通过对卸载阶段和随机化分析的截距和斜率之间的双曲线回归,都证明了高协同变化指数可以稳定初始状态下的水平力。较高的协同变化指数与参与者的平均 k 值较低有关,这表明肌肉共同激活具有不稳定的作用。分析在保持姿势不变的情况下(运动等效)两个状态之间的{RC;k}空间的偏差,这两个状态由一个自愿的快速身体摆动分开,与非运动等效相比,运动等效的偏差明显更大。这是第一项使用各种计算方法在神经控制变量空间中证明姿势稳定协同作用的研究。它有望直接应用于姿势障碍和康复研究。

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