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猫外侧上薛氏回皮质:Y细胞输入与皮质顶盖投射。

Cat lateral suprasylvian cortex: Y-cell inputs and corticotectal projection.

作者信息

Berson D M

出版信息

J Neurophysiol. 1985 Feb;53(2):544-56. doi: 10.1152/jn.1985.53.2.544.

Abstract

Retinal Y-cells activate most cells in the deep layers of the cat's superior colliculus via an indirect pathway involving the occipital cortex. The lateral suprasylvian area seems to be an important source of visual input to the deep collicular strata but it is unclear whether Y-cell influences reach this extrastriate area and, hence, whether this area participates in the indirect Y-cell pathway. In this study, retinal influences on the posteromedial lateral suprasylvian area (PMLS) were studied in anesthetized cats. Responses to electrical stimulation of the optic disk (OD) and optic chiasm (OX) were recorded in single units in PMLS and in neurons of the dorsal lateral geniculate nucleus (LGNd) that were antidromically driven from PMLS. Virtually all PMLS cells (99%; 99/100) exhibited small differences (less than or equal to 0.8 ms) between OD- and OX-activation latency, indicating that they were driven by a pathway originating in rapidly conducting Y-cell axons. A small number of PMLS cells (17%; 20/118) had very short activation latencies (less than or equal to 3.2 ms from OX), comparable to those of cells in areas 17 and 18 receiving monosynaptic inputs from geniculate Y-cells. Further, LGNd cells with latency behaviors typical of Y-cells could be antidromically driven from PMLS, confirming that geniculate Y-cells project directly to PMLS. Most PMLS cells (83%; 98/118), though exhibiting small OD-OX latency differences, had absolute latencies too long to be attributed to direct inputs from geniculate Y-cells (3.3-8.5 ms from OX). Thus Y-cells in the LGNd influence most PMLS cells by way of a multisynaptic pathway. PMLS cells antidromically activated from the superior colliculus were driven only by this multisynaptic Y-cell input. Total conduction time from the retina through PMLS to the colliculus corresponds closely to the latency of the indirect Y-cell activation observed in the deep collicular layers. These results support the view that the lateral suprasylvian cortex constitutes an important source of visual input to the cat's deep collicular layers and, more generally, that the extrastriate visual cortex may figure prominently in the cortical control of gaze.

摘要

视网膜Y细胞通过一条涉及枕叶皮质的间接通路激活猫上丘深层的大多数细胞。外侧上薛氏回区域似乎是向丘深层提供视觉输入的一个重要来源,但尚不清楚Y细胞的影响是否能到达这个纹外区域,因此也不清楚该区域是否参与间接Y细胞通路。在本研究中,我们在麻醉的猫身上研究了视网膜对后内侧外侧上薛氏回区域(PMLS)的影响。记录了PMLS单个神经元以及从PMLS逆向驱动的背侧外侧膝状体核(LGNd)神经元对电刺激视盘(OD)和视交叉(OX)的反应。几乎所有PMLS细胞(99%;99/100)在OD和OX激活潜伏期之间表现出微小差异(小于或等于0.8毫秒),这表明它们是由起源于快速传导的Y细胞轴突的通路驱动的。少数PMLS细胞(17%;20/118)具有非常短的激活潜伏期(从OX开始小于或等于3.2毫秒),与接受膝状体Y细胞单突触输入区域17和18中的细胞相当。此外,具有典型Y细胞潜伏期行为的LGNd细胞可以从PMLS逆向驱动,证实膝状体Y细胞直接投射到PMLS。大多数PMLS细胞(83%;98/118)虽然表现出OD - OX潜伏期微小差异,但其绝对潜伏期过长,不能归因于来自膝状体Y细胞的直接输入(从OX开始为3.3 - 8.5毫秒)。因此,LGNd中的Y细胞通过多突触通路影响大多数PMLS细胞。从PMLS逆向激活的上丘PMLS细胞仅由这种多突触Y细胞输入驱动。从视网膜经PMLS到上丘的总传导时间与在上丘深层观察到的间接Y细胞激活潜伏期密切对应。这些结果支持这样一种观点,即外侧上薛氏回皮质是猫上丘深层视觉输入的一个重要来源,更普遍地说,纹外视觉皮质可能在注视的皮质控制中起重要作用。

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