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猫膝状纹状体神经元关系的互相关分析

Cross-correlation analysis of geniculostriate neuronal relationships in cats.

作者信息

Tanaka K

出版信息

J Neurophysiol. 1983 Jun;49(6):1303-18. doi: 10.1152/jn.1983.49.6.1303.

Abstract

The organization of geniculate inputs to a cat's visual cortical cell was studied by a cross-correlation technique. Simultaneous extracellular recordings were made in the lateral geniculate nucleus and in the striate cortex, and neuronal connectivity between a geniculate cell and a striate cell was examined by cross-correlograms of their impulse discharges under photic stimuli. Of 243 pairs of geniculate and striate cells with overlapping receptive fields, 82 showed positive correlations with short (0.9-2.7 ms) delay times. The delays in 65 of the 82 pairs were short enough to infer that the geniculate cell exerted monosynaptic excitatory action on the striate cell. Monosynaptic excitations were found in all types of striate cells. Those in cells with exclusively an on area or an off area (E-on/off cells) or in simple cells originated mostly from X geniculate cells; those in special-complex cells originated exclusively from Y geniculate cells; and those in standard-complex cells arose from both X and Y geniculate cells. The convergence number from geniculate cells to an E-on/off or simple striate cell was estimated as more than 10, since about 1/10 of the discharges from an E-on/off or simple cell in response to a moving stimulus was correlated with discharges from a geniculate cell. A larger convergence number (more than 30) was obtained for complex cells. Convergence from 2 to 5 geniculate cells was actually demonstrated in 17 of the 32 striate cells, each of which was tested in pair with 3-14 geniculate cells. The converging inputs thus observed included both X and Y geniculate cells in one E-on, one simple, and three standard-complex cells. They included both on-center and off-center geniculate cells in one simple, one special-complex, and five standard-complex cells. Under stimulation with a stationary light slit, the center fields but not the surround fields of geniculate cells were found to contribute to the receptive fields of the simple striate cells. However, the surround fields of geniculate cells contributed to the subliminal response areas flanking the central areas of E-on/off cells. The center fields of the geniculate cells also contributed to the central areas of the E-on/off cells. These observations suggest different models for simple cells and E-on/off cells as regards the organization of their geniculate inputs; simple cells may receive inputs from both on-center and off-center geniculate cells, but E-on/off cells receive inputs only from one or the other of them.

摘要

运用互相关技术研究了猫视觉皮层细胞的膝状输入组织。在外侧膝状核和纹状皮层同时进行细胞外记录,并通过在光刺激下它们冲动发放的互相关图来检测膝状细胞和纹状细胞之间的神经元连接性。在243对具有重叠感受野的膝状细胞和纹状细胞中,82对在短延迟时间(0.9 - 2.7毫秒)下呈现正相关。82对中的65对延迟时间足够短,可推断膝状细胞对纹状细胞施加单突触兴奋性作用。在所有类型的纹状细胞中均发现了单突触兴奋。那些仅具有开区域或关区域的细胞(E - 开/关细胞)或简单细胞中的单突触兴奋大多源自X膝状细胞;特殊复杂细胞中的单突触兴奋仅源自Y膝状细胞;标准复杂细胞中的单突触兴奋则来自X和Y膝状细胞。由于E - 开/关或简单细胞对移动刺激的反应中约1/10的发放与膝状细胞的发放相关,因此估计从膝状细胞到E - 开/关或简单纹状细胞的汇聚数量超过10。复杂细胞获得了更大的汇聚数量(超过30)。在32个纹状细胞中的17个细胞中实际证明了2至5个膝状细胞的汇聚,每个纹状细胞与3 - 14个膝状细胞进行配对测试。如此观察到的汇聚输入在一个E - 开细胞、一个简单细胞和三个标准复杂细胞中包括X和Y膝状细胞。在一个简单细胞、一个特殊复杂细胞和五个标准复杂细胞中,它们包括中心型和周边型膝状细胞。在用固定光缝刺激时,发现膝状细胞的中心野而非周边野对简单纹状细胞的感受野有贡献。然而,膝状细胞的周边野对E - 开/关细胞中心区域两侧的阈下反应区域有贡献。膝状细胞的中心野也对E - 开/关细胞的中心区域有贡献。这些观察结果就其膝状输入组织而言,为简单细胞和E - 开/关细胞提出了不同的模型;简单细胞可能接收来自中心型和周边型膝状细胞的输入,但E - 开/关细胞仅接收其中之一的输入。

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