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Visual contribution to human standing balance during support surface tilts

机译:支撑面倾斜期间视觉对人体站立平衡的贡献

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Visual position and velocity cues improve human standing balance, reducing sway responses to external disturbances and sway variability. Previous work suggested that human balancing is based on sensory estimates of external disturbances and their compensation using feedback mechanisms (Disturbance Estimation and Compensation, DEC model). This study investigates the visual effects on sway responses to pseudo-random support surface tilts, assuming that improvements result from lowering the velocity threshold in a tilt estimate and the position threshold in an estimate of the gravity disturbance. Center of mass (COM) sway was measured with four different tilt amplitudes, separating the effect of visual cues across the conditions 'Eyes closed' (no visual cues), '4 Hz stroboscopic illumination' (visual position cues), and 'continuous illumination' (visual position and velocity cues). In a model based approach, parameters of disturbance estimators were identified. The model reproduced experimental results and showed a specific reduction of the position and velocity threshold when adding visual position and velocity cues, respectively. Sway variability was analyzed to explore a hypothesized relation between estimator thresholds and internal noise. Results suggest that adding the visual cues reduces the contribution of vestibular noise, thereby reducing sway variability and allowing for lower thresholds, which improves the disturbance compensation. (C) 2015 The Authors. Published by Elsevier B.V.
机译:视觉位置和速度提示可改善人的站立平衡,减少摇摆对外部干扰和摇摆变化的响应。先前的工作表明,人的平衡是基于外部干扰的感官估计以及使用反馈机制(干扰估计和补偿,DEC模型)的补偿。这项研究调查了视觉效果对摇摆对伪随机支撑表面倾斜的响应的影响,假设改善是由于降低了倾斜估计中的速度阈值和重力干扰估计中的位置阈值而导致的。以四个不同的倾斜幅度测量质心(COM)的摇摆,从而在“闭眼”(无视觉提示),“ 4 Hz频闪照明”(“视觉位置提示”)和“连续照明”条件下分离视觉提示的效果'(视觉位置和速度提示)。在基于模型的方法中,确定了干扰估计器的参数。该模型复制了实验结果,并显示了分别添加视觉位置和速度提示时位置和速度阈值的特定降低。分析了摇摆变异性,以探索估计器阈值与内部噪声之间的假设关系。结果表明,增加视觉提示会减少前庭噪声的影响,从而减少摇摆变化并允许较低的阈值,从而改善干扰补偿。 (C)2015作者。由Elsevier B.V.发布

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