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首页> 外文期刊>Gait & posture >Effects of external loads on balance control during upright stance: experimental results and model-based predictions.
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Effects of external loads on balance control during upright stance: experimental results and model-based predictions.

机译:直立姿势期间外部负载对平衡控制的影响:实验结果和基于模型的预测。

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The purpose of this study was to identify the effects of external loads on balance control during upright stance, and to examine the ability of a new balance control model to predict these effects. External loads were applied to 12 young, healthy participants, and effects on balance control were characterized by center-of-pressure (COP) based measures. Several loading conditions were studied, involving combinations of load mass (10% and 20% of individual body mass) and height (at or 15% of stature above the whole-body COM). A balance control model based on an optimal control strategy was used to predict COP time series. It was assumed that a given individual would adopt the same neural optimal control mechanisms, identified in a no-load condition, under diverse external loading conditions. With the application of external loads, COP mean velocity in the anterior-posterior direction and RMS distance in the medial-lateral direction increased 8.1% and 10.4%, respectively. Predicted COP mean velocity and RMS distance in the anterior-posterior direction also increased with external loading, by 11.1% and 2.9%, respectively. Both experimental COP data and model-based predictions provided the same general conclusion, that application of larger external loads and loads more superior to the whole body center of mass lead to less effective postural control and perhaps a greater risk of loss of balance or falls. Thus, it can be concluded that the assumption about consistency in control mechanisms was partially supported, and it is the mechanical changes induced by external loads that primarily affect balance control.
机译:这项研究的目的是确定直立姿势期间外部负载对平衡控制的影响,并检验新的平衡控制模型预测这些影响的能力。将外部负荷应用于12位健康的年轻参与者,并通过基于压力中心(COP)的措施来表征对平衡控制的影响。研究了几种载荷条件,包括载荷质量(单个体重的10%和20%)和身高(整个COM身高的15%或15%)的组合。使用基于最优控制策略的平衡控制模型来预测COP时间序列。假定给定的个体将采用相同的神经最优控制机制,在各种外部负载条件下在无负载条件下确定。在施加外部载​​荷的情况下,前后方向的COP平均速度和内侧方向的RMS距离分别增加了8.1%和10.4%。预测的COP平均速度和前后方向的RMS距离也随着外部载荷的增加而分别增加11.1%和2.9%。 COP实验数据和基于模型的预测都提供了相同的一般结论,即施加更大的外部载荷和更重于整个身体质心的载荷会导致姿势控制效率降低,并且失去平衡或跌倒的风险可能更大。因此,可以得出结论,部分支持了关于控制机制一致性的假设,而外部负载引起的机械变化则主要影响平衡控制。

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