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顶盖前区的宽视野非定向视觉单元:它们是否会抑制扫视诱发视觉刺激引起的眼球跟踪。

Wide-field nondirectional visual units in the pretectum: do they suppress ocular following of saccade-induced visual stimulation.

作者信息

Ibbotson M R, Mark R F

机构信息

Developmental Neurobiology Group, Research School of Biological Sciences, Australian National University, Canberra.

出版信息

J Neurophysiol. 1994 Sep;72(3):1448-50. doi: 10.1152/jn.1994.72.3.1448.

Abstract
  1. Direction-selective neurons in the nucleus of the optic tract (NOT) provide motion signals for controlling ocular following responses. When stimulated at low temporal and high spatial frequencies of motion (slow speeds), these retinal-slip neurons produce directional responses. When stimulated by motion at high temporal and low spatial frequencies (the visual conditions during saccades) the spontaneous activities of the neurons are inhibited by motion in all directions. A second class of neurons in, or near, the NOT have large receptive fields, are nondirectional, and are tuned to detect the same spatial and temporal stimuli that induce nondirectional inhibition in the retinal-slip neurons. We suggest that the nondirectional cells provide an inhibitory input for the retinal-slip neurons and therefore prevent ocular following of the visual displacements that accompany saccades.
摘要
  1. 视束核(NOT)中的方向选择性神经元为控制眼球跟踪反应提供运动信号。当以低时间频率和高空间频率的运动(慢速)进行刺激时,这些视网膜滑动神经元会产生定向反应。当受到高时间频率和低空间频率的运动刺激时(扫视期间的视觉条件),神经元的自发活动会受到各个方向运动的抑制。NOT内或其附近的第二类神经元具有大的感受野,是非定向的,并且被调整为检测在视网膜滑动神经元中诱导非定向抑制的相同空间和时间刺激。我们认为,非定向细胞为视网膜滑动神经元提供抑制性输入,因此可防止眼球跟踪扫视时伴随的视觉位移。

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