Impact of Joint Fixation on Postural Dynamics during Single-Leg Stance.

IF 1.1 4区 心理学 Q4 NEUROSCIENCES
Kentaro Kodama, Kazuhiro Yasuda, Hideo Yamagiwa
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引用次数: 0

Abstract

We investigated the relationship between the mechanical degrees of freedom (DoF) and its postural dynamics. The joint DoF was fixed to constrain the mechanical DoF. Nine participants were required to perform a single-leg stance task. The center of pressure trajectory data was analyzed. Ankle fixation induced a larger amount of variability in the anteroposterior direction, and less dimensionality and complexity in the mediolateral direction. These results suggest that the ankle joint fixation caused limited postural sway in the mediolateral direction; therefore, functional DoF and complexity decreased. In contrast, it increased the amount of postural sway variability in the anteroposterior direction. Our findings imply a direct relationship between the mechanical DoF of the human movement system and its postural dynamics.

单腿站立时关节固定对体位动力学的影响。
我们研究了机械自由度(DoF)与其姿态动力学之间的关系。通过固定关节自由度来约束机械自由度。九名参与者被要求完成单腿站立的任务。对压力轨迹中心数据进行了分析。踝关节固定在前后方向上引起较大的变异性,而在中外侧方向上引起较少的维度和复杂性。这些结果表明,踝关节固定引起有限的中外侧方向的姿势摆动;因此,降低了功能自由度和复杂度。相反,它增加了前后方向的姿势摇摆变异性。我们的发现暗示了人体运动系统的机械自由度与其姿势动力学之间的直接关系。
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来源期刊
Journal of Motor Behavior
Journal of Motor Behavior 医学-神经科学
CiteScore
3.10
自引率
0.00%
发文量
39
审稿时长
>12 weeks
期刊介绍: The Journal of Motor Behavior, a multidisciplinary journal of movement neuroscience, publishes articles that contribute to a basic understanding of motor control. Articles from different disciplinary perspectives and levels of analysis are encouraged, including neurophysiological, biomechanical, electrophysiological, psychological, mathematical and physical, and clinical approaches. Applied studies are acceptable only to the extent that they provide a significant contribution to a basic issue in motor control. Of special interest to the journal are those articles that attempt to bridge insights from different disciplinary perspectives to infer processes underlying motor control. Those approaches may embrace postural, locomotive, and manipulative aspects of motor functions, as well as coordination of speech articulators and eye movements. Articles dealing with analytical techniques and mathematical modeling are welcome.
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