首页> 外文会议>Asia Pacific conference on biomechanics;International conference on biomedical engineering;ICBME;APBiomech;World congress of biomechanics;WCB 2010 >Model-Based Investigation of the Roles of Efferent and Afferent Noise in Balance Control in the Postural Control System
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Model-Based Investigation of the Roles of Efferent and Afferent Noise in Balance Control in the Postural Control System

机译:基于模型的姿势控制系统中发散和发散噪声在平衡控制中的作用的模型研究

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The objectives of this study were to evaluate the performance of two 2D balance control model structures and to make model-based inferences regarding balance control mechanisms, specifically the degree to which afferent vs. efferent noise is involved in generating sway. The balance control model structures were based on an optimal control strategy, and differed in the sources of noise in postural control (efferent vs. afferent). Results showed that all 95% confidence intervals of traditional measures resulting from both model structures included unity, indicating that there were no significant differences between the simulated and experimental measures. The model structure with efferent noise input generated a smaller cost function and smaller scalar errors compared with that with afferent noise input. Smaller cost function and smaller scalar errors are associated with better performance in terms of simulating postural sway. Thus, it might be concluded that efferent noise in the postural control system plays a relatively important role in driving postural sway. These findings may be useful for the development of intervention strategies for the improvement of balance and reduction of fall risks.
机译:这项研究的目的是评估两个2D平衡控制模型结构的性能,并对平衡控制机制做出基于模型的推断,特别是传入和传出噪声在产生摇摆中所涉及的程度。平衡控制模型的结构基于最佳控制策略,并且姿势控制中的噪声源(有效vs.传入)有所不同。结果表明,两种模型结构所产生的传统度量的所有95%置信区间都包含1,表明模拟度量与实验度量之间没有显着差异。与传入噪声输入相比,传入噪声输入的模型结构产生了较小的代价函数和较小的标量误差。在模拟姿势摇摆方面,较小的成本函数和较小的标量误差与更好的性能相关。因此,可以得出结论,姿势控制系统中的传出噪声在驱动姿势摇摆中起着相对重要的作用。这些发现可能有助于制定干预策略,以改善平衡并降低跌倒风险。

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