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Varying the Speed of Perceived Self-Motion Affects Postural Control during Locomotion

机译:改变感知自动运动的速度会影响运动过程中的姿势控制

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Virtual reality environments have been used to show the importance of perception of self-motion in controlling posture and gait. In this study, the authors used a virtual! reality environment to investigate whether varying optical flow speed had any effect on postural control during locomotion. Healthy young adult participants walked under two conditions, with optical flow matching their preferred walking speed, and with a randomly varying optic flow speed compared to their preferred walking speed. Exposure to the varying optic flow increased the variability in their postural control as measured by area of COP when compared with the matched speed condition. If perception of self-motion becomes less predictable, postural control during locomotion becomes more variable and possibly riskier.
机译:虚拟现实环境已被用来展示在控制姿势和步态中对自动运动感知的重要性。在这项研究中,作者使用了虚拟!现实环境研究不同的光学流速是否对运动过程中的姿势控制有任何影响。健康的年轻成人参与者在两个条件下走路,光流量与他们的首选步行速度相匹配,并且随机变化的光学流量与他们的首选步行速度相比。与匹配的速度条件相比,接触不同光学流量增加了通过COP面积测量的姿势控制的可变性。如果对自动运动的感知变得不那么可预测的,则运动过程中的姿势控制变得更加可变,并且可能的风险更大。

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