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Processing time of addition or withdrawal of single or combined balance-stabilizing haptic and visual information

机译:添加或提取单个或组合的平衡稳定触觉和视觉信息的处理时间

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We investigated the integration time of haptic and visual input and their interaction during stance stabilization. Eleven subjects performed four tandem-stance conditions (60 trials each). Vision, touch, and both vision and touch were added and withdrawn. Furthermore, vision was replaced with touch and vice versa. Body sway, tibialis anterior, and peroneus longus activity were measured. Following addition or withdrawal of vision or touch, an integration time period elapsed before the earliest changes in sway were observed. Thereafter, sway varied exponentially to a new steady-state while reweighting occurred. Latencies of sway changes on sensory addition ranged from 0.6 to 1.5 s across subjects, consistently longer for touch than vision, and were regularly preceded by changes in muscle activity. Addition of vision and touch simultaneously shortened the latencies with respect to vision or touch separately, suggesting cooperation between sensory modalities. Latencies following withdrawal of vision or touch or both simultaneously were shorter than following addition. When vision was replaced with touch or vice versa, adding one modality did not interfere with the effect of withdrawal of the other, suggesting that integration of withdrawal and addition were performed in parallel. The time course of the reweighting process to reach the new steady-state was also shorter on withdrawal than addition. The effects of different sensory inputs on posture stabilization illustrate the operation of a time-consuming, possibly supraspinal process that integrates and fuses modalities for accurate balance control. This study also shows the facilitatory interaction of visual and haptic inputs in integration and reweighting of stance-stabilizing inputs.
机译:我们调查了触觉和视觉输入的整合时间及其在姿势稳定过程中的相互作用。 11名受试者进行了4种串联姿势试验(每组60次试验)。视觉,触觉以及视觉和触觉都已添加和撤消。此外,视觉被触摸代替,反之亦然。测量身体摇摆,胫骨前肌和腓骨长肌活动。添加或撤消视觉或触觉后,观察到最早的摇摆变化之前经过了一个整合时间段。此后,在进行重加权时,摇摆以指数形式变化至新的稳态。受试者在感官上的摇摆变化潜伏期为0.6到1.5 s,触摸的持续时间长于视觉,并且经常发生肌肉活动变化。视觉和触觉的增加同时缩短了视觉或触觉的等待时间,提示感觉模态之间的合作。撤回视力或触摸后或同时撤下两者后的潜伏期短于添加后的潜伏期。当视力被触摸代替时,反之亦然,添加一种方式不会干扰另一种方式的撤回效果,这表明撤回和添加的整合是并行进行的。退出后,重新加权过程达到新稳态的时间过程也比添加过程短。不同的感觉输入对姿势稳定的影响说明了一个耗时的,可能是脊柱上方过程的操作,该过程集成并融合了模式以进行精确的平衡控制。这项研究还显示了视觉和触觉输入在姿势稳定输入的整合和加权中的促进交互作用。

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