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Sensory integration of a light touch reference in human standing balance

机译:轻触参考在人体站立平衡中的感觉整合

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摘要

In upright stance, light touch of a space-stationary touch reference reduces spontaneous sway. Moving the reference evokes sway responses which exhibit non-linear behavior that has been attributed to sensory reweighting. Reweighting refers to a change in the relative contribution of sensory cues signaling body sway in space and light touch cues signaling finger position with respect to the body. Here we test the hypothesis that the sensory fusion process involves a transformation of light touch signals into the same reference frame as other sensory inputs encoding body sway in space, or vice versa. Eight subjects lightly gripped a robotic manipulandum which moved in a circular arc around the ankle joint. A pseudo-randomized motion sequence with broad spectral characteristics was applied at three amplitudes. The stimulus was presented at two different heights and therefore different radial distances, which were matched in terms of angular motion. However, the higher stimulus evoked a significantly larger sway response, indicating that the response was not matched to stimulus angular motion. Instead, the body sway response was strongly related to the horizontal translation of the manipulandum. The results suggest that light touch is integrated as the horizontal distance between body COM and the finger. The data were well explained by a model with one feedback loop minimizing changes in horizontal COM-finger distance. The model further includes a second feedback loop estimating the horizontal finger motion and correcting the first loop when the touch reference is moving. The second loop includes the predicted transformation of sensory signals into the same reference frame and a non-linear threshold element that reproduces the non-linear sway responses, thus providing a mechanism that can explain reweighting.
机译:在直立姿势下,空间固定触摸参考的轻触可减少自发摇摆。移动参考会引起摇摆响应,该响应表现出归因于感官加权的非线性行为。重加权是指感觉线索在身体中晃动的感觉提示和信号指示手指相对于身体的轻触提示的相对贡献的变化。在这里,我们测试了一种假设,即感觉融合过程涉及将轻触摸信号转换为与编码身体在空间中摇摆的其他感觉输入相同的参考系,反之亦然。八名受试者轻轻地抓住了一只机器人manipulandum,它绕着踝关节绕圆弧移动。在三个振幅上应用具有宽频谱特征的伪随机运动序列。刺激以两个不同的高度出现,因此出现了不同的径向距离,这在角度运动方面是匹配的。但是,较高的刺激引起明显的摇摆响应,表明该响应与刺激角运动不匹配。取而代之的是,人体摇摆反应与Manipulandum的水平平移密切相关。结果表明,轻触已集成为身体COM和手指之间的水平距离。数据通过一个具有一个反馈环的模型很好地解释了,该反馈环使水平COM手指距离的变化最小。该模型还包括第二反馈回路,该第二反馈回路在触摸参考正在移动时估计水平手指运动并校正第一回路。第二个循环包括将传感信号转换为相同参考帧的预测转换,以及一个再现非线性摇摆响应的非线性阈值元素,从而提供一种可以解释重加权的机制。

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