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视网膜中方向选择性的潜在机制和神经回路。

Mechanisms and circuitry underlying directional selectivity in the retina.

作者信息

Fried Shelley I, Münch Thomas A, Werblin Frank S

机构信息

Vision Science, University of California Berkeley, 145 LSA, Berkeley, California 94720, USA.

出版信息

Nature. 2002 Nov 28;420(6914):411-4. doi: 10.1038/nature01179.

Abstract

In the retina, directionally selective ganglion cells respond with robust spiking to movement in their preferred direction, but show minimal response to movement in the opposite, or null, direction. The mechanisms and circuitry underlying this computation have remained controversial. Here we show, by isolating the excitatory and inhibitory inputs to directionally selective cells and measuring direct connections between these cells and presynaptic neurons, that a presynaptic interneuron, the starburst amacrine cell, delivers direct inhibition to directionally selective cells. The processes of starburst cells are connected asymmetrically to directionally selective cells: those pointing in the null direction deliver inhibition; those pointing in the preferred direction do not. Starburst cells project inhibition laterally ahead of a stimulus moving in the null direction. In addition, starburst inhibition is itself directionally selective: it is stronger for movement in the null direction. Excitation in response to null direction movement is reduced by an inhibitory signal acting at a site that is presynaptic to the directionally selective cell. The interplay of these components generates reduced excitation and enhanced inhibition in the null direction, thereby ensuring robust directional selectivity.

摘要

在视网膜中,方向选择性神经节细胞对其偏好方向的运动以强烈的放电做出反应,但对相反方向(即零方向)的运动反应极小。这种计算背后的机制和神经回路一直存在争议。在这里,我们通过分离方向选择性细胞的兴奋性和抑制性输入,并测量这些细胞与突触前神经元之间的直接连接,发现一种突触前中间神经元——星爆无长突细胞,向方向选择性细胞传递直接抑制。星爆细胞的突起与方向选择性细胞不对称连接:指向零方向的突起传递抑制;指向偏好方向的突起则不传递。星爆细胞在零方向运动的刺激前方横向投射抑制。此外,星爆抑制本身具有方向选择性:对零方向的运动更强。通过作用于方向选择性细胞突触前位点的抑制信号,对零方向运动的兴奋反应会降低。这些成分之间的相互作用在零方向产生减少的兴奋和增强的抑制,从而确保强大的方向选择性。

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