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静止或移动观察者在额状面中对视觉运动方向的处理。

Processing of visual motion direction in the fronto-parallel plane in the stationary or moving observer.

作者信息

Probst T, Loose R, Niedeggen M, Wist E R

出版信息

Behav Brain Res. 1995 Oct;70(2):133-44. doi: 10.1016/0166-4328(95)80003-4.

Abstract

To examine the effect of concurrent self-motion on the perception of the direction of object-motion, random-dot kinematograms were employed in which the strength of the directional signal was manipulated by varying the percentage of coherently moving pixels. The subject's task was to indicate the motion direction of briefly presented displays while undergoing whole body rotations with angular accelerations of 0, 5, 15, or 45 degrees/s2. The perception of the direction of visual motion in the horizontal plane was impaired only when visual and vestibular motion directions were incongruous. The impairment increases with both increasing angular acceleration and decreasing percentage of coherently moving pixels. For object-motion in the vertical plane, an impairment was found for both congruous and incongruous combination of visual and vestibular stimulation, although not as pronounced for the latter (i.e., visual upward, vestibular downward stimulation, and vice versa). These results are discussed in terms of postnatal development and neurophysiological optimization processes resulting from intersensory 'updating' through every-day experience of object-motion during self-motion.

摘要

为了研究同时发生的自身运动对物体运动方向感知的影响,采用了随机点运动图,其中通过改变连贯运动像素的百分比来操纵方向信号的强度。受试者的任务是在以0、5、15或45度/秒²的角加速度进行全身旋转时,指出短暂呈现的显示的运动方向。仅当视觉和前庭运动方向不一致时,水平面上视觉运动方向的感知才会受损。这种损害随着角加速度的增加和连贯运动像素百分比的降低而增加。对于垂直平面上的物体运动,发现视觉和前庭刺激的一致和不一致组合都会导致损害,尽管后者(即视觉向上、前庭向下刺激,反之亦然)的损害不太明显。根据出生后的发育以及通过自身运动过程中物体运动的日常经验进行感官“更新”所产生的神经生理优化过程,对这些结果进行了讨论。

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