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猫初级视觉皮层中细胞感受野特性的层间差异。

Laminar differences in receptive field properties of cells in cat primary visual cortex.

作者信息

Gilbert C D

出版信息

J Physiol. 1977 Jun;268(2):391-421. doi: 10.1113/jphysiol.1977.sp011863.

Abstract
  1. Cells in area 17 of the cat visual cortex were studied with a view towards correlating receptive field properties with layering. A number of receptive field parameters were measured for all units, and nearly every unit was marked with a microlesion to determine accurately the layer in which it was found.2. Cells were defined as simple or complex by mapping with stationary stimuli, using the criteria of Hubel & Wiesel (1962). Complex cells fell into two groups: those that showed summation for increased slit length (standard complex) and those that did not (special complex).3. The simple cells were located in the deep part of layer 3, in layer 4, and in layer 6. This corresponds to the distribution of afferents from the dorsal layers of the lateral geniculate nucleus. In these cortical layers the simple cells differed primarily with respect to their receptive field size, cells in layer 4 having the smallest, layer 3 intermediate, and layer 6 the largest fields. Layer 4 was the only layer in which simple cells showed end-inhibition (a reduction in response to slits extending beyond the excitatory portion of the receptive field).4. The standard complex cells were found in all layers, but were quite scarce in layer 4. As with the simple cells, field size varied with layer: in layer 2+3 they had small to intermediate field sizes, in layer 5 intermediate, and in layer 6 very large. Layer 6 cells showed summation for slits of increased length up to very large values, and responded best when the slits were centred in the receptive field. The only standard complex cells that showed end-inhibition were those in layer 2+3, and these were similar to the layer 4 simple cells in terms of proportion of end-inhibited units and degree of end-inhibition.5. The special complex cells, originally described by Palmer & Rosenquist (1974), were found in two tiers: the upper one at the layer 3/layer 4 border and the lower one in layer 5. They were different from the standard complex cells in having a high spontaneous activity, high velocity preference, and large fields which were similar in size (at a given eccentricity) from one cell to the next. Many showed reduced response to slits of increasing length, even for slits that did not extend beyond the borders of the responsive region.6. Cells in layer 6 (the origin of the corticogeniculate projection) were antidromically activated from the lateral geniculate nucleus. The antidromically activated units included both simple and complex cells, and they had the long receptive fields characteristic of the overall population of cells in layer 6.7. The results showed that there are different types of simple and complex cells, and that cells in different layers have different properties. Taken together with their differences in site of projection, this demonstrates that the anatomical lamination pattern is reflected in functional differences between cells in different layers.
摘要
  1. 对猫视觉皮层17区的细胞进行了研究,旨在将感受野特性与分层情况相关联。测量了所有神经元的多个感受野参数,并且几乎每个神经元都用微小损伤进行标记,以准确确定其所在的层。

  2. 根据休伯尔和维泽尔(1962年)的标准,通过用固定刺激进行映射,将细胞定义为简单细胞或复杂细胞。复杂细胞分为两组:对增加的狭缝长度表现出总和效应的(标准复杂细胞)和不表现出这种效应的(特殊复杂细胞)。

  3. 简单细胞位于第3层深部、第4层和第6层。这与外侧膝状体核背侧层传入纤维的分布相对应。在这些皮层层中,简单细胞主要在感受野大小方面存在差异,第4层的细胞感受野最小,第3层居中,第6层最大。第4层是唯一简单细胞表现出末端抑制的层(对超出感受野兴奋部分的狭缝反应减弱)。

  4. 标准复杂细胞在所有层中都有发现,但在第4层相当稀少。与简单细胞一样,感受野大小随层而异:在第2 + 3层它们的感受野大小从小到中,在第5层居中,在第6层非常大。第6层细胞对长度增加的狭缝表现出总和效应,直至非常大的值,并且当狭缝位于感受野中心时反应最佳。唯一表现出末端抑制的标准复杂细胞是第2 + 3层中的细胞,这些细胞在末端抑制单元的比例和末端抑制程度方面与第4层简单细胞相似。

  5. 特殊复杂细胞最初由帕尔默和罗森奎斯特(1974年)描述,分布在两层:上层在第3层/第4层边界,下层在第5层。它们与标准复杂细胞不同,具有高自发活动、高速度偏好和大感受野,在给定离心率下,不同细胞的感受野大小相似。许多细胞对长度增加的狭缝反应减弱,即使对于未超出反应区域边界的狭缝也是如此。

  6. 第6层(皮质膝状体投射的起源层)的细胞从外侧膝状体核被逆向激活。逆向激活的神经元包括简单细胞和复杂细胞,并且它们具有第6层细胞总体群体所特有的长感受野。

  7. 结果表明存在不同类型的简单细胞和复杂细胞,并且不同层中的细胞具有不同特性。结合它们在投射部位的差异,这表明解剖分层模式反映在不同层细胞之间的功能差异上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dc9/1283670/6589b0ab7fd6/jphysiol00809-0147-a.jpg

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