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猫外侧上薛氏视觉皮层中央视野表征中神经元的时空分析。

Spatial and temporal analysis by neurons in the representation of the central visual field in the cat's lateral suprasylvian visual cortex.

作者信息

Gizzi M S, Katz E, Movshon J A

机构信息

Department of Psychology, New York University, New York.

出版信息

Vis Neurosci. 1990 Nov;5(5):463-8. doi: 10.1017/s0952523800000584.

DOI:10.1017/s0952523800000584
PMID:2288895
Abstract

We studied quantitatively the receptive-field properties of 74 units recorded from the representation of the central visual fields in the cat's lateral suprasylvian (LS) visual cortex. In agreement with previous workers, we found that LS receptive fields tended to be large and to lack discernible spatial structure. They resembled the complex receptive fields of areas 17 and 18 in their general organization. We examined the responses of these neurons to moving optimally oriented sinusoidal gratings that varied in spatial and temporal frequency of drift. Most LS neurons were selective for the spatial frequency of sinusoidal gratings; 7% responded to all spatial frequencies below a cutoff value. In agreement with previous reports, the optimal spatial frequencies for LS neurons covered a wider range than is seen in either area 17 or 18 alone (0.05-1 cycle/deg), but are certainly included in the range covered by both these afferent areas. Individual neurons in LS responded to a range of spatial frequencies broader than is typical for neurons in areas 17 and 18. The effect of varying the drift rate of otherwise optimal gratings was similar in LS to that reported for areas 17 and 18. Most neurons were optimally responsive to drift rates between 0.5 and 4 Hz, and resolved frequencies as high as 10-30 Hz. A few neurons had optima higher than 6 Hz and resolved frequencies in excess of 30 Hz. We conclude that the receptive fields of LS neurons reflect rather closely the properties of their afferents from areas 17 and 18.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们定量研究了从猫的外侧上薛氏(LS)视觉皮层中央视野表征中记录的74个神经元的感受野特性。与之前的研究人员一致,我们发现LS感受野往往较大且缺乏可辨别的空间结构。它们在总体组织上类似于17区和18区的复杂感受野。我们检查了这些神经元对移动的最佳取向正弦光栅的反应,这些光栅在漂移的空间和时间频率上有所变化。大多数LS神经元对正弦光栅的空间频率具有选择性;7%的神经元对低于截止值的所有空间频率都有反应。与之前的报道一致,LS神经元的最佳空间频率覆盖范围比单独的17区或18区所见的范围更广(0.05 - 1周/度),但肯定包含在这两个传入区域覆盖的范围内。LS中的单个神经元对空间频率的反应范围比17区和18区的神经元更宽。改变其他方面最佳光栅的漂移速率的效果在LS中与在17区和18区报道的相似。大多数神经元对0.5至4 Hz之间的漂移速率反应最佳,并能分辨高达10 - 30 Hz的频率。少数神经元的最佳频率高于6 Hz,能分辨超过30 Hz的频率。我们得出结论,LS神经元的感受野相当紧密地反映了它们来自17区和18区的传入纤维的特性。(摘要截断于250字)

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Spatial and temporal analysis by neurons in the representation of the central visual field in the cat's lateral suprasylvian visual cortex.猫外侧上薛氏视觉皮层中央视野表征中神经元的时空分析。
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