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首页> 外文期刊>Journal of Biomechanics >Evaluation of the roles of passive and active control of balance using a balance control model.
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Evaluation of the roles of passive and active control of balance using a balance control model.

机译:使用平衡控制模型评估平衡的被动和主动控制的作用。

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摘要

At present there is a lack of consensus regarding the relative roles of passive and active control of quiet upright stance. In the current work, this issue was investigated using two simulation models based on contemporary theories. Specifically, the two models, both of which assumed active control torques to be generated from an optimal neural controller, differed with respect to whether or not passive control torques (stiffness and damping) were included. Model parameters were specified using experimental center-of-pressure (COP) time series obtained during upright stance, and comparisons then made between simulated and actual COP-based measures. Including both active and passive joint torques in the control model did not appear to lead to any improvement in the ability to simulate COP compared with only including active joint torque. Further, simulated passive control torques were typically less than 10% of the active control torques, though some exceptions were found. These results, along with existing empirical evidence, suggest that active control torque is dominant in maintaining balance during upright stance.
机译:目前,关于被动和主动控制安静直立姿势的相对作用尚缺乏共识。在当前的工作中,使用基于当代理论的两个仿真模型对这一问题进行了研究。具体地,两个模型都假定要从最佳神经控制器生成主动控制转矩,这两个模型在是否包括被动控制转矩(刚度和阻尼)方面有所不同。使用在竖立姿势期间获得的实验压力中心(COP)时间序列指定模型参数,然后在基于模拟和实际COP的测量之间进行比较。与仅包括主动关节扭矩相比,在控制模型中同时包括主动关节扭矩和被动关节扭矩似乎并未导致模拟COP的能力得到任何改善。此外,尽管发现了一些例外情况,但是模拟的被动控制转矩通常小于主动控制转矩的10%。这些结果以及现有的经验证据表明,主动控制扭矩在保持直立姿势期间保持平衡方面占主导地位。

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