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猫视觉皮层的细胞结构与功能

Cell structure and function in the visual cortex of the cat.

作者信息

Kelly J P, Van Essen D C

出版信息

J Physiol. 1974 May;238(3):515-47. doi: 10.1113/jphysiol.1974.sp010541.

Abstract
  1. The organization of the visual cortex was studied with a technique that allows one to determine the physiology and morphology of individual cells. Micro-electrodes filled with the fluorescent dye Procion yellow were used to record intracellularly from cells in area 17 of the cat. The visual receptive field of each neurone was classified as simple, complex, or hypercomplex, and the cell was then stained by the iontophoretic injection of dye.2. Fifty neurones were successfully examined in this way, and their structural features were compared to the varieties of cell types seen in Golgi preparations of area 17. The majority of simple units were stellate cells, whereas the majority of complex and hypercomplex units were pyramidal cells. Several neurones belonged to less common morphological types, such as double bouquet cells. Simple cells were concentrated in layer IV, hypercomplex cells in layer II + III, and complex cells in layers II + III, V and VI.3. Electrically inexcitable cells that had high resting potentials but no impulse activity were stained and identified as glial cells. Glial cells responded to visual stimuli with slow graded depolarizations, and many of them showed a preference for a stimulus orientation similar to the optimal orientation for adjacent neurones.4. The results show that there is a clear, but not absolute correlation between the major structural and functional classes of cells in the visual cortex. This approach, linking the physiological properties of a single cell to a given morphological type, will help in furthering our understanding of the cerebral cortex.
摘要
  1. 利用一种能够确定单个细胞生理特性和形态学特征的技术,对视觉皮层的组织进行了研究。用填充有荧光染料普施安黄的微电极对猫17区的细胞进行细胞内记录。将每个神经元的视觉感受野分为简单型、复杂型或超复杂型,然后通过离子电渗法注入染料对细胞进行染色。

  2. 用这种方法成功检测了50个神经元,并将它们的结构特征与在17区高尔基染色标本中观察到的各种细胞类型进行比较。大多数简单细胞是星状细胞,而大多数复杂细胞和超复杂细胞是锥体细胞。有几个神经元属于不太常见的形态类型,如双束细胞。简单细胞集中在第IV层,超复杂细胞在第II + III层,复杂细胞在第II + III层、第V层和第VI层。

  3. 对静息电位高但无冲动活动的电不可兴奋细胞进行染色并鉴定为神经胶质细胞。神经胶质细胞对视觉刺激有缓慢的分级去极化反应,其中许多对与相邻神经元的最佳方向相似的刺激方向表现出偏好。

  4. 结果表明,视觉皮层中细胞的主要结构和功能类别之间存在明显但非绝对的相关性。这种将单个细胞的生理特性与特定形态类型联系起来的方法,将有助于加深我们对大脑皮层的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/182e/1330900/81e9f51a3ab5/jphysiol00935-0113-a.jpg

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