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猫的视皮层17区和18区向背外侧膝状核突触输入的定量电子显微镜分析。

Quantitative electron microscopic analysis of synaptic input from cortical areas 17 and 18 to the dorsal lateral geniculate nucleus in cats.

作者信息

Vidnyánszky Z, Hámori J

机构信息

First Department of Anatomy, Semmelweis University Medical School, Budapest, Hungary.

出版信息

J Comp Neurol. 1994 Nov 8;349(2):259-68. doi: 10.1002/cne.903490208.

Abstract

Cortical feedback is the largest extraretinal projection to the lateral geniculate nucleus. This input is thought to modulate the transfer of visual information in a state-dependent manner. The quantitative distribution and synaptology of axon terminals arising from different cortical areas is still an unsolved question. To address this problem, the synaptic termination pattern of corticogeniculate axons from cortical areas 17 and 18 entering the lateral geniculate nucleus of the cat was examined. The Phaseolus vulgaris leucoagglutinin anterograde tract tracing method was used for the labeling of corticogeniculate terminals. Postsynaptic targets were characterized by postembedding gamma-aminobutyric acid (GABA) immunocytochemistry. In both laminae A and A1, labeled corticogeniculate axons from area 17 established synaptic contacts with GABA-immunopositive, interneuronal dendritic profiles more frequently (17.5% of all axons) than did labeled axon terminals from area 18 (7% of axons). Conversely, 76% of labeled corticogeniculate axons from area 17, as opposed to 87% of labeled axons from area 18, terminated on GABA-immunonegative relay cell dendrites. Furthermore, the mean diameter of GABA-negative relay cell dendrites postsynaptic to labeled axons from area 17 was significantly smaller than the diameter of relay cell dendrites synapsing with labeled terminals from area 18. These results indicate that the corticogeniculate axons from cortical areas 17 and 18 exhibit different synaptic termination patterns in the dorsal lateral geniculate nucleus of the cat, suggesting that these two projections may subserve different functions in visual information processing.

摘要

皮质反馈是外侧膝状体核最大的视网膜外投射。这种输入被认为以状态依赖的方式调节视觉信息的传递。来自不同皮质区域的轴突终末的定量分布和突触学仍是一个未解决的问题。为了解决这个问题,研究了猫的皮质17区和18区进入外侧膝状体核的皮质膝状体轴突的突触终末模式。采用菜豆白细胞凝集素顺行束路追踪法标记皮质膝状体终末。通过包埋后γ-氨基丁酸(GABA)免疫细胞化学对突触后靶点进行表征。在A层和A1层中,来自17区的标记皮质膝状体轴突与GABA免疫阳性的中间神经元树突轮廓建立突触联系的频率(占所有轴突的17.5%)高于来自18区的标记轴突终末(占轴突的7%)。相反,来自17区的76%的标记皮质膝状体轴突终止于GABA免疫阴性的中继细胞树突上,而来自18区的标记轴突这一比例为87%。此外,与来自18区的标记终末形成突触的中继细胞树突相比,来自17区的标记轴突突触后的GABA阴性中继细胞树突的平均直径明显更小。这些结果表明,猫背侧外侧膝状体核中来自皮质17区和18区 的皮质膝状体轴突表现出不同的突触终末模式,这表明这两种投射在视觉信息处理中可能发挥不同的功能。

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