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The Propagation of Movement Variability in Time: A Methodological Approach for Discrete Movements with Multiple Degrees of Freedom

机译:运动变化在时间上的传播:一种具有多个自由度的离散运动的方法论方法

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摘要

In recent years, theory-building in motor neuroscience and our understanding of the synergistic control of the redundant human motor system has significantly profited from the emergence of a range of different mathematical approaches to analyze the structure of movement variability. Approaches such as the Uncontrolled Manifold method or the Noise-Tolerance-Covariance decomposition method allow to detect and interpret changes in movement coordination due to e.g., learning, external task constraints or disease, by analyzing the structure of within-subject, inter-trial movement variability. Whereas, for cyclical movements (e.g., locomotion), mathematical approaches exist to investigate the propagation of movement variability in time (e.g., time series analysis), similar approaches are missing for discrete, goal-directed movements, such as reaching. Here, we propose canonical correlation analysis as a suitable method to analyze the propagation of within-subject variability across different time points during the execution of discrete movements. While similar analyses have already been applied for discrete movements with only one degree of freedom (DoF; e.g., Pearson's product-moment correlation), canonical correlation analysis allows to evaluate the coupling of inter-trial variability across different time points along the movement trajectory for multiple DoF-effector systems, such as the arm. The theoretical analysis is illustrated by empirical data from a study on reaching movements under normal and disturbed proprioception. The results show increased movement duration, decreased movement amplitude, as well as altered movement coordination under ischemia, which results in a reduced complexity of movement control. Movement endpoint variability is not increased under ischemia. This suggests that healthy adults are able to immediately and efficiently adjust the control of complex reaching movements to compensate for the loss of proprioceptive information. Further, it is shown that, by using canonical correlation analysis, alterations in movement coordination that indicate changes in the control strategy concerning the use of motor redundancy can be detected, which represents an important methodical advance in the context of neuromechanics.
机译:近年来,运动神经科学的理论构建以及我们对冗余人类运动系统的协同控制的理解,从一系列分析运动变异性结构的不同数学方法的出现中受益匪浅。诸如不受控制的歧管方法或噪声容差-协方差分解方法之类的方法允许通过分析受试者内部,试验间运动的结构来检测和解释由于学习,外部任务约束或疾病引起的运动协调变化。变化性。而对于周期性运动(例如运动),存在研究运动变化随时间变化的数学方法(例如时间序列分析),而离散的,目标导向的运动(例如到达)则缺少类似的方法。在这里,我们提出规范的相关性分析,作为分析离散运动执行过程中不同时间点上受试者内部变异性传播的一种合适方法。尽管类似的分析已经应用于仅具有一个自由度的离散运动(DoF;例如,Pearson的乘积-矩相关性),但规范的相关性分析允许评估沿运动轨迹在不同时间点的试验间可变性的耦合,多个自由度执行器系统,例如手臂。通过对正常和受扰的本体感受下到达运动的研究的经验数据说明了理论分析。结果表明,运动持续时间增加,运动幅度减小以及缺血下运动协调性改变,从而降低了运动控制的复杂性。在缺血情况下,运动终点变异性不会增加。这表明健康的成年人能够立即有效地调整对复杂伸手动作的控制,以补偿本体感受信息的损失。此外,显示出,通过使用典型的相关性分析,可以检测到运动协调的变化,该变化指示了与使用运动冗余有关的控制策略的变化,这代表了神经力学领域中重要的方法学进展。

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