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与猴子视觉皮层的V1相比,V2中视觉信息的分离处理较少。

Less segregated processing of visual information in V2 than in V1 of the monkey visual cortex.

作者信息

Tamura H, Sato H, Katsuyama N, Hata Y, Tsumoto T

机构信息

Deparment of Neurophysiology, Biomedical Research Center, Osaka University Medical School, Yamadaoka, Suita 565, Japan.

出版信息

Eur J Neurosci. 1996 Feb;8(2):300-9. doi: 10.1111/j.1460-9568.1996.tb01214.x.

Abstract

To test the possibility of cross-talk between parallel pathways dealing with different aspects of visual information such as orientation, direction of motion and colour in cortical area V2, we quantitatively analysed visual responses of 121 V2 cells recorded from anaesthetized and paralysed macaques and compared them with those of 147 V1 cells. A selectivity index of visual responses was calculated for each neuron, which was then classified as selective or not to a particular attribute of visual stimuli. Twenty-one percent of the V2 neurons had dual selectivity to both colour and direction of stimulus motion (C&D cells). In V1, only 5% of the cells were C&D cells. Thus, the proportion of C&D cells significantly increased from V1 to V2. We also carried out cross-correlation analysis of spike trains recorded simultaneously from pairs of V2 neurons or pairs of V1 neurons. In V2, correlated firings could be observed between cells with completely different optimal orientation, such as orthogonal, while it was never observed in V1. The cross-correlation analysis further indicted that functional interactions in V2 were more widespread than those in V1. These results suggest that neurons which have different functional properties become less segregated, and that functional interactions become more widespread in V2 than in V1.

摘要

为了测试在处理视觉信息不同方面(如方位、运动方向和颜色)的平行通路之间是否存在交互作用,我们在麻醉和麻痹的猕猴身上定量分析了121个V2细胞的视觉反应,并将其与147个V1细胞的反应进行了比较。计算了每个神经元的视觉反应选择性指数,然后将其分类为对视觉刺激的特定属性具有选择性或不具有选择性。21%的V2神经元对刺激运动的颜色和方向具有双重选择性(C&D细胞)。在V1中,只有5%的细胞是C&D细胞。因此,C&D细胞的比例从V1到V2显著增加。我们还对同时记录的成对V2神经元或成对V1神经元的尖峰序列进行了互相关分析。在V2中,可以观察到具有完全不同最佳方位的细胞之间存在相关放电,如正交方位,而在V1中从未观察到。互相关分析进一步表明,V2中的功能相互作用比V1中更广泛。这些结果表明,具有不同功能特性的神经元之间的分离程度降低,并且V2中的功能相互作用比V1中更广泛。

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