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Dynamic Systems Theory in Human Movement Exploring Coordination Patterns by Angle-Angle Diagrams Using Kinect

机译:人体运动中的动力系统理论,通过Kinect的角度角图探索协调模式

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Analyzing time series data using linear spatial/angular kinematics traditionally makes quantification of human movement using low-cost cameras such as the Kinect sensor. Through this conventional approach, interactions between body joints are difficult to analyze and coordination parameters remain hidden. Dynamic Systems Theory (DST) provides a non-linear framework to analyze human movement by representing intersegmental interactions in angle-angle diagrams. DST offers an accurate solution to study coordination in human movement, but it also requires expensive hardware and very specialized biomechanical software. The paper describes a methodological procedure to carry out DST analysis with motion data recorded from the Kinect sensor. Specifically, we address the issue to create and interpret angle-angle diagrams with an emphasis on exploring coordination patterns in motion capture (MoCap) signals. We introduced a method to facilitate the DST analysis and we applied it with two different use cases of human movement analysis in real scenarios: sports gesture study and motion analysis in physical rehabilitation interventions. Results showed that important coordination parameters could be deduced from the angle-angle diagrams improving the understanding of motion data when two joints have to be considered. Therefore, we demonstrated that DST analysis could be performed with inexpensive tools providing a promissory approach for coordination and motor synchronization analysis in novel serious games for health.
机译:传统上,使用线性空间/角度运动学分析时间序列数据时,会使用诸如Kinect传感器之类的低成本相机来量化人类运动。通过这种常规方法,人体关节之间的相互作用很难分析,并且协调参数仍然隐藏。动态系统理论(DST)提供了一个非线性框架,可通过在角度-角度图中表示段间交互来分析人的动作。 DST提供了一种精确的解决方案来研究人体运动中的协调性,但是它也需要昂贵的硬件和非常专业的生物力学软件。本文介绍了一种方法学过程,该方法对从Kinect传感器记录的运动数据进行DST分析。具体而言,我们解决了创建和解释角度图的问题,重点是探索运动捕捉(MoCap)信号中的协调模式。我们介绍了一种促进DST分析的方法,并在实际场景中将其与人体运动分析的两个不同用例一起应用:运动手势研究和物理康复干预中的运动分析。结果表明,当必须考虑两个关节时,可以从角度-角度图中推导出重要的协调参数,从而改善对运动数据的理解。因此,我们证明了可以用廉价的工具执行DST分析,从而为健康的新型严肃游戏中的协调和运动同步分析提供了一种可行的方法。

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