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与刺激运动相关的人类稳态视觉诱发电位的分离与特性

Isolation and characteristics of a steady-state visually-evoked potential in humans related to the motion of a stimulus.

作者信息

Snowden R J, Ullrich D, Bach M

机构信息

School of Psychology, University of Wales College of Cardiff.

出版信息

Vision Res. 1995 May;35(10):1365-73. doi: 10.1016/0042-6989(95)98716-m.

Abstract

We have examined the visual potential evoked by two motion stimuli. In the first stimulus (termed coherent motion) a random-dot pattern oscillated between phases of coherent and incoherent ("snowstorm") motion, and in the second a random-dot pattern alternated in direction of motion (termed direction change). We found that the response to the coherent motion stimulus is low-pass with respect to speed, has low contrast sensitivity and increases steadily with the contrast of the stimuli. The direction change visually-evoked potential (VEP) is band-pass with respect to speed, has high contrast sensitivity but then saturates and even reduces as the stimulus contrast is raised above 0.1. The behaviour of the direction change VEP is similar in nature to results from psychophysical experiments of motion perception and to the known properties of directionally selective cells of the cortex. On the other hand the behaviour of the coherent motion VEP suggests this may not be mediated by a mechanism specific to motion.

摘要

我们研究了由两种运动刺激诱发的视觉电位。在第一种刺激(称为连贯运动)中,随机点图案在连贯运动和不连贯(“暴风雪”)运动阶段之间振荡,在第二种刺激中,随机点图案在运动方向上交替变化(称为方向变化)。我们发现,对连贯运动刺激的反应在速度方面是低通的,具有低对比度敏感性,并且随着刺激对比度的增加而稳步增加。方向变化视觉诱发电位(VEP)在速度方面是带通的,具有高对比度敏感性,但随后会饱和,甚至在刺激对比度提高到0.1以上时会降低。方向变化VEP的行为在本质上与运动感知的心理物理学实验结果以及皮层方向选择性细胞的已知特性相似。另一方面,连贯运动VEP的行为表明,这可能不是由特定于运动的机制介导的。

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