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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Orientation bias of the extraclassical receptive field of the relay cells in the cat's dorsal lateral geniculate nucleus.
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Orientation bias of the extraclassical receptive field of the relay cells in the cat's dorsal lateral geniculate nucleus.

机译:猫背外侧膝状核中中继细胞的超经典感受野的取向偏向。

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The spatial properties of the extraclassical receptive fields (ECRF) of neurons responding to a stimulus restricted to it and its interaction with the classical receptive field (CRF) in visual information processing were investigated in 74 relay cells in the dorsal lateral geniculate nucleus (LGNd) of anesthetized cats. The results demonstrate that the ECRF of most relay cells in the LGNd responded preferentially to a grating stimulus of low spatial frequency through a mechanism of spatial summation. These biased cells showed a significant orientation bias which was relatively smaller than that of the CRF. The preferred orientations of the ECRF were not correlated with those of the CRF in most relay cells. The orientation biased ECRFs and CRFs interacted with each other in a non-linear way, resulting in a great diversity of response properties. Overall, the CRF played a more significant role than the ECRF in determining a cell's orientation bias and preferred orientation. The ECRF mostly showed a modulatory role mainly in suppressing and/or in partially facilitating the neural response to stimulation in the CRF although in some cases, the ECRF did determine a cell's responsiveness and orientation sensitivity. These results suggest that the ECRF might contribute to the ability of the LGNd neurons to detect some complex features such as texture segmentation and provide a subcortical contribution to the integrative field of visual cortical cells through receiving inputs from retinal ganglion cells with similar orientation biased extended surrounds [Neuroscience 98 (2000) 207].
机译:在背面外侧膝状核(LGNd)的74个中继细胞中研究了神经元的超经典感受野(ECRF)的空间特性,该神经元对受限于其的刺激做出反应,并与视觉信息处理中的经典感受野(CRF)相互作用。麻醉的猫。结果表明,通过空间求和机制,LGNd中大多数中继单元的ECRF优先响应低空间频率的光栅刺激。这些偏斜的细胞显示出明显的取向偏向,该偏向比CRF的偏向小。在大多数中继单元中,ECRF的首选方向与CRF的首选方向不相关。方向偏向的ECRF和CRF以非线性方式相互作用,从而导致响应特性的多样性。总体而言,CRF在确定电池的方向偏差和首选方向方面比ECRF发挥了更大的作用。 ECRF主要表现出调节作用,主要是抑制和/或部分促进了对CRF刺激的神经反应,尽管在某些情况下,ECRF确实确定了细胞的反应性和方向敏感性。这些结果表明,ECRF可能有助于LGNd神经元检测某些复杂特征(例如纹理分割)的能力,并通过接收来自具有类似方向偏向的扩展神经周围神经节的视网膜神经节细胞的输入,为视觉皮层细胞的整合场提供皮层下的贡献。 [Neuroscience 98(2000)207]。

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