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前馈性神经节输入在猫初级视皮层方位选择性产生中的作用。

Role of feedforward geniculate inputs in the generation of orientation selectivity in the cat's primary visual cortex.

机构信息

Department of Optometry and Vision Sciences, Corner of Keppel and Cardigan Streets, Parkville, Victoria 3010, Australia.

出版信息

J Physiol. 2011 May 1;589(Pt 9):2349-61. doi: 10.1113/jphysiol.2010.202317. Epub 2011 Mar 14.

Abstract

Neurones of the mammalian primary visual cortex have the remarkable property of being selective for the orientation of visual contours. It has been controversial whether the selectivity arises from intracortical mechanisms, from the pattern of afferent connectivity from lateral geniculate nucleus (LGN) to cortical cells or from the sharpening of a bias that is already present in the responses of many geniculate cells. To investigate this, we employed a variation of an electrical stimulation protocol in the LGN that has been claimed to suppress intra cortical inputs and isolate the raw geniculocortical input to a striate cortical cell. Such stimulation led to a sharpening of the orientation sensitivity of geniculate cells themselves and some broadening of cortical orientation selectivity. These findings are consistent with the idea that non-specific inhibition of the signals from LGN cells which exhibit an orientation bias can generate the sharp orientation selectivity of primary visual cortical cells. This obviates the need for an excitatory convergence from geniculate cells whose receptive fields are arranged along a row in visual space as in the classical model and provides a framework for orientation sensitivity originating in the retina and getting sharpened through inhibition at higher levels of the visual pathway.

摘要

哺乳动物初级视觉皮层的神经元具有对视觉轮廓方向选择性的显著特性。选择性是来自皮层内机制、来自外侧膝状体核(LGN)到皮层细胞的传入连接模式,还是来自许多膝状体细胞反应中已经存在的偏向锐化,一直存在争议。为了研究这一点,我们采用了一种声称可以抑制皮层内输入并分离出条纹状皮层细胞原始视交叉输入的 LGN 电刺激方案的变体。这种刺激导致膝状体细胞本身的方向敏感性锐化,以及皮层方向选择性的一些拓宽。这些发现与这样一种观点一致,即对表现出方向偏向的 LGN 细胞信号进行非特异性抑制可以产生初级视觉皮层细胞的尖锐方向选择性。这排除了来自视交叉细胞的兴奋性会聚的需要,这些细胞的感受野在视觉空间中排列成一行,如经典模型所示,并为起源于视网膜的方向敏感性提供了一个框架,并通过在视觉通路的更高水平进行抑制来使其变得更加敏锐。

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