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首页> 外文期刊>Journal of Applied Biomechanics >Quantifying Segmental Contributions to Center-of-Mass Motion During Dynamic Continuous Support Surface Perturbations Using Simplified Estimation Models
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Quantifying Segmental Contributions to Center-of-Mass Motion During Dynamic Continuous Support Surface Perturbations Using Simplified Estimation Models

机译:使用简化估计模型来定量在动态连续支持表面扰动期间对质心运动的节分贡献

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摘要

Investigating balance reactions following continuous, multidirectional, support surface perturbations is essential for improving our understanding of balance control in moving environments. Segmental motions are often incorporated into rapid balance reactions following external perturbations to balance, although the effects of these motions during complex, continuous perturbations have not been assessed. This study aimed to quantify the contributions of body segments (ie, trunk, head, upper extremity, and lower extremity) to the control of center-of-mass (COM) movement during continuous, multidirectional, support surface perturbations. Three-dimensional, whole-body kinematics were captured while 10 participants experienced 5 minutes of perturbations. Anteroposterior, mediolateral, and vertical COM position and velocity were calculated using a full-body model and 7 models with reduced numbers of segments, which were compared with the full-body model. With removal of body segments, errors relative to the full-body model increased, while relationship strength decreased. The inclusion of body segments appeared to affect COM measures, particularly COM velocity. Findings suggest that the body segments may provide a means of improving the control of COM motion, primarily its velocity, during continuous, multidirectional perturbations, and constitute a step toward improving our understanding of how the limbs contribute to balance control in moving environments.
机译:调查连续,多向支持表面扰动后的平衡反应对于提高我们对移动环境中的平衡控制的理解至关重要。在外部扰动后,通常将节段性运动纳入快速平衡反应,尽管这些动作在复杂,连续扰动中的影响尚未得到评估。本研究旨在量化在连续,多向支持表面扰动期间对体内段(即,躯干,头部,上肢,上肢和下肢)对质量中心(COM)运动的贡献。捕获了三维,全身运动学,而10位参与者经历了5分钟的扰动。使用全身模型和7种型号计算前体模型和垂直COM位置和速度,与全身模型进行比较。通过去除身体段,相对于全身模型的误差增加,而关系强度降低。包含身体段似乎影响COM测量,特别是COM速度。结果表明,身体段可以提供改善COM运动的控制的手段,主要是其速度,在连续的多向扰动期间,并构成改善我们对肢体如何在移动环境中平衡控制的理解的步骤。

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