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首页> 外文期刊>Journal of Neurophysiology >Mechanisms of direction selectivity in cat primary visual cortex as revealed by visual adaptation.
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Mechanisms of direction selectivity in cat primary visual cortex as revealed by visual adaptation.

机译:通过视觉适应揭示猫主视觉皮层中方向选择性的机制。

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摘要

In contrast to neurons of the lateral geniculate nucleus (LGN), neurons in the primary visual cortex (V1) are selective for the direction of visual motion. Cortical direction selectivity could emerge from the spatiotemporal configuration of inputs from thalamic cells, from intracortical inhibitory interactions, or from a combination of thalamic and intracortical interactions. To distinguish between these possibilities, we studied the effect of adaptation (prolonged visual stimulation) on the direction selectivity of intracellularly recorded cortical neurons. It is known that adaptation selectively reduces the responses of cortical neurons, while largely sparing the afferent LGN input. Adaptation can therefore be used as a tool to dissect the relative contribution of afferent and intracortical interactions to the generation of direction selectivity. In both simple and complex cells, adaptation caused a hyperpolarization of the resting membrane potential (-2.5 mV, simple cells, -0.95 mV complex cells). In simple cells, adaptation in either direction only slightly reduced the visually evoked depolarization; this reduction was similar for preferred and null directions. In complex cells, adaptation strongly reduced visual responses in a direction-dependent manner: the reduction was largest when the stimulus direction matched that of the adapting motion. As a result, adaptation caused changes in the direction selectivity of complex cells: direction selectivity was reduced after preferred direction adaptation and increased after null direction adaptation. Because adaptation in the null direction enhanced direction selectivity rather than reduced it, it seems unlikely that inhibition from the null direction is the primary mechanism for creating direction selectivity.
机译:与外侧膝状核(LGN)的神经元相反,初级视觉皮层(V1)中的神经元对视觉运动方向具有选择性。皮质方向选择性可能来自丘脑细胞输入的时空配置,皮质内抑制性相互作用或丘脑与皮质内相互作用的组合。为了区分这些可能性,我们研究了适应性(长时间的视觉刺激)对细胞内记录的皮质神经元方向选择性的影响。已知适应性选择性地减少了皮质神经元的反应,同时大大节省了传入的LGN输入。因此,适应可以用作剖析传入和皮质内相互作用对方向选择性产生的相对贡献的工具。在简单和复杂细胞中,适应都会引起静息膜电位的超极化(-2.5 mV,简单细胞,-0.95 mV复杂细胞)。在简单的细胞中,在任一方向上的适应只会稍微减少视觉诱发的去极化;对于首选方向和空方向,此减少幅度相似。在复杂的细胞中,适应以方向依赖的方式强烈降低了视觉反应:当刺激方向与适应运动相匹配时,降低最大。结果,适应引起复杂细胞方向选择性的改变:优选方向适应后方向选择性降低,而零方向适应后方向选择性提高。因为在零方向上进行自适应增强了方向选择性,而不是降低了方向选择性,所以从零方向进行抑制似乎不太可能是产生方向选择性的主要机制。

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