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人体站立时感知摇摆的本体感觉、视觉和前庭阈值。

Proprioceptive, visual and vestibular thresholds for the perception of sway during standing in humans.

作者信息

Fitzpatrick R, McCloskey D I

机构信息

Prince of Wales Medical Research Institute, Randwick, Sydney, NSW, Australia.

出版信息

J Physiol. 1994 Jul 1;478 ( Pt 1)(Pt 1):173-86. doi: 10.1113/jphysiol.1994.sp020240.

Abstract
  1. Thresholds for the perception of postural sway induced by gentle perturbations were determined for five normal standing subjects. In this context we understand 'perception' to mean 'able to give a subjective report'. The thresholds for the perception of movements that were equivalent to sway in velocity and amplitude were determined when the available sensory input was limited to only one, or a pair, of the vestibular, visual, and proprioceptive systems. To examine vestibular inputs alone, vision was excluded and the whole body was moved with the ankles in a fixed position. To examine visual inputs alone, the body was kept stationary and a 'room' was moved around the subjects to simulate the relative visual-field movement that occurs during standing. To limit the available sensory input to proprioception from the legs, subjects were held stationary and balanced a load that was equivalent to their own body using their ankles. In this situation, perturbations were applied to the 'equivalent body' and these could only be perceived from the resulting ankle movements. Thresholds for perceiving ankle movements were also determined in the same posture, but with the leg muscles bearing no load. 2. The thresholds for the perception of sway during standing were very small, typically 0.003 rad at a velocity of 0.001 rad s-1, and even smaller movements were perceived as the mean velocity of the sway increased up to 0.003 rad s-1. No difference was found between the thresholds for perceiving forward sway and backward sway. Eye closure during standing did not affect the threshold for perceiving sway. 3. When sensory input was limited to proprioception from the legs, the thresholds for the perception of passive ankle movements were equivalent to the thresholds for the perception of sway during standing with all sensory inputs available. When the leg muscles were relaxed, the thresholds for perceiving ankle movements increased approximately twofold. 4. The visual thresholds for perceiving movement were higher than the proprioceptive thresholds at slower velocities of movement, but there was no difference at higher velocities. 5. Both the proprioceptive and visual thresholds were sufficiently small to allow perception of the sway that was recorded when the subjects stood normally in a relaxed manner. In contrast, the vestibular thresholds were an order of magnitude greater than the visual or proprioceptive thresholds and above the largest sway movements that were recorded during normal standing.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 针对五名正常站立的受试者,确定了由轻微扰动引起的姿势摆动感知阈值。在此背景下,我们将“感知”理解为“能够给出主观报告”。当可用的感觉输入仅限于前庭、视觉和本体感觉系统中的一个或一对时,确定了与速度和幅度摆动等效的运动感知阈值。为单独检查前庭输入,排除视觉,将脚踝固定在一个位置移动整个身体。为单独检查视觉输入,身体保持静止,围绕受试者移动“房间”以模拟站立时发生的相对视野运动。为将可用感觉输入限制为来自腿部的本体感觉,受试者保持静止,用脚踝平衡相当于其自身身体重量的负荷。在这种情况下,对“等效身体”施加扰动,只能从由此产生的脚踝运动中感知到这些扰动。还在相同姿势下确定了感知脚踝运动的阈值,但腿部肌肉无负荷。2. 站立时摆动感知阈值非常小,在速度为0.001弧度/秒时通常为0.003弧度,随着摆动平均速度增加到0.003弧度/秒,能感知到更小的运动。向前摆动和向后摆动的感知阈值之间未发现差异。站立时闭眼不影响摆动感知阈值。3. 当感觉输入仅限于来自腿部的本体感觉时,被动脚踝运动的感知阈值与所有感觉输入可用时站立时摆动的感知阈值相当。当腿部肌肉放松时,感知脚踝运动的阈值增加约两倍。4. 在较慢运动速度下,视觉运动感知阈值高于本体感觉阈值,但在较高速度下没有差异。5. 本体感觉和视觉阈值都足够小,足以感知受试者以放松方式正常站立时记录到的摆动。相比之下,前庭阈值比视觉或本体感觉阈值大一个数量级,且高于正常站立期间记录到的最大摆动运动。(摘要截短至400字)
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68b5/1155655/ce044e418ec1/jphysiol00345-0174-a.jpg

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