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猫小脑蚓部神经元对视觉信息的编码

Coding of visual information by units in the cat cerebellar vermis.

作者信息

Donaldson I M, Hawthorne M E

出版信息

Exp Brain Res. 1979 Jan 2;34(1):27-48. doi: 10.1007/BF00238339.

Abstract

Extracellular records were made of the responses to precisely controlled stationary or moving visual stimuli of 174 units in the cerebellar vermis of cats anaesthetised with chloralose. Identified Purkinje cells and unidentified units responsed similarly. Responses to ON and to OFF steps of a stationary light bar had different characteristics. Some units showed changes in the form of their ON responses related to different positions of the stimulus in their large receptive fields. In some cases changes in response latency from different field positions were also noted. Some units responded only to binocular stimulation and others gave much larger responses to binocular than to monocular stimulation. In addition, some were sensitive to the relative retinal disparity of images and, of these, several were sensitive to vertical as well as to horizontal retinal disparity. Sinusoidally-moving light bars gave responses consisting of one or two bursts of impulses per cycle; the most effective frequency was about 3 Hz. These responses may represent detection of the instant of maximum velocity. The relatively precise coding of retinal disparity in spite of the large size of receptive fields and the coding of position within these large fields is discussed. A possible function for the disparity-sensitive units in the control of vergence is suggested and the relation of this control to visual depth detection and to the estimation of the absolute distance of objects from the animal is discussed.

摘要

对用氯醛糖麻醉的猫的小脑蚓部的174个单位,记录了其对精确控制的静止或移动视觉刺激的细胞外反应。已识别的浦肯野细胞和未识别的单位反应相似。对静止光条的开和关步骤的反应具有不同特征。一些单位的开反应形式会因刺激在其大感受野中的不同位置而改变。在某些情况下,还注意到不同视野位置的反应潜伏期变化。一些单位仅对双眼刺激有反应,而另一些单位对双眼刺激的反应比对单眼刺激的反应大得多。此外,一些单位对图像的相对视网膜视差敏感,其中有几个对垂直和水平视网膜视差都敏感。正弦移动的光条产生的反应是每个周期由一或两个脉冲爆发组成;最有效的频率约为3Hz。这些反应可能代表对最大速度瞬间的检测。讨论了尽管感受野很大但视网膜视差的相对精确编码以及这些大视野内位置的编码。提出了视差敏感单位在控制辐辏中的可能功能,并讨论了这种控制与视觉深度检测以及与动物到物体绝对距离估计的关系。

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