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猫视觉皮层中棘状星状细胞的兴奋性突触输入。

Excitatory synaptic inputs to spiny stellate cells in cat visual cortex.

作者信息

Stratford K J, Tarczy-Hornoch K, Martin K A, Bannister N J, Jack J J

机构信息

University Laboratory of Physiology, Oxford, UK.

出版信息

Nature. 1996 Jul 18;382(6588):258-61. doi: 10.1038/382258a0.

Abstract

In layer 4 of cat visual cortex, the monocular, concentric receptive fields of thalamic neurons, which relay retinal input to the cortex, are transformed into 'simple' cortical receptive fields that are binocular and selective for the precise orientation, direction of motion, and size of the visual stimulus. These properties are thought to arise from the pattern of connections from thalamic neurons, although anatomical studies show that most excitatory inputs to layer 4 simple cells are from recurrently connected circuits of cortical neurons. We examined single fibre inputs to spiny stellate neurons. We examined single fibre inputs to spiny stellate neurons in slices of cat visual cortex, and conclude that thalamocortical synapses are powerful and the responses they evoke are unusually invariant for central synapses. However, the responses to intracortical inputs, although less invariant, are strong enough to provide most of the excitation to simple cells in vivo. Our results suggest that the recurrent excitatory circuits of cortex may amplify the initial feedforward thalamic signal, subserving dynamic modifications of the functional properties of cortical neurons.

摘要

在猫视觉皮层的第4层,丘脑神经元的单眼、同心感受野将视网膜输入传递至皮层,这些感受野转变为“简单”的皮层感受野,其具有双眼性,且对视觉刺激的精确方向、运动方向和大小具有选择性。尽管解剖学研究表明,第4层简单细胞的大多数兴奋性输入来自皮层神经元的循环连接回路,但这些特性被认为源于丘脑神经元的连接模式。我们研究了向棘状星型神经元的单纤维输入。我们在猫视觉皮层切片中研究了向棘状星型神经元的单纤维输入,并得出结论:丘脑皮质突触很强,它们引发的反应对于中枢突触而言异常稳定。然而,对皮层内输入的反应虽然稳定性稍差,但强度足以在体内为简单细胞提供大部分兴奋。我们的结果表明,皮层的循环兴奋性回路可能会放大最初的前馈丘脑信号,从而有助于动态改变皮层神经元的功能特性。

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