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猫视觉皮层中的空间频率图谱。

Spatial frequency maps in cat visual cortex.

作者信息

Issa N P, Trepel C, Stryker M P

机构信息

W. M. Keck Foundation Center for Integrative Neuroscience and Department of Physiology, University of California, San Francisco, California 94143-0444, USA.

出版信息

J Neurosci. 2000 Nov 15;20(22):8504-14. doi: 10.1523/JNEUROSCI.20-22-08504.2000.

Abstract

Neurons in the primary visual cortex (V1) respond preferentially to stimuli with distinct orientations and spatial frequencies. Although the organization of orientation selectivity has been thoroughly described, the arrangement of spatial frequency (SF) preference in V1 is controversial. Several layouts have been suggested, including laminar, columnar, clustered, pinwheel, and binary (high and low SF domains). We have reexamined the cortical organization of SF preference by imaging intrinsic cortical signals induced by stimuli of various orientations and SFs. SF preference maps, produced from optimally oriented stimuli, were verified using targeted microelectrode recordings. We found that a wide range of SFs is represented independently and mostly continuously within V1. Domains with SF preferences at the extremes of the SF continuum were separated by no more than (3/4) mm (conforming to the hypercolumn description of cortical organization) and were often found at pinwheel center singularities in the cortical map of orientation preference. The organization of cortical maps permits nearly all combinations of orientation and SF preference to be represented in V1, and the overall arrangement of SF preference in V1 suggests that SF-specific adaptation effects, found in psychophysical experiments, may be explained by local interactions within a given SF domain. By reanalyzing our data using a different definition of SF preference than is used in electrophysiological and psychophysical studies, we can reproduce the different SF organizations suggested by earlier studies.

摘要

初级视觉皮层(V1)中的神经元对具有不同方向和空间频率的刺激有优先反应。尽管方向选择性的组织已经被详细描述,但V1中空间频率(SF)偏好的排列仍存在争议。已经提出了几种布局,包括层状、柱状、簇状、风车状和二元(高和低SF域)。我们通过对由各种方向和SF的刺激诱发的内在皮层信号进行成像,重新审视了SF偏好的皮层组织。由最佳方向刺激产生的SF偏好图,通过靶向微电极记录进行了验证。我们发现,在V1中,广泛的SF范围是独立且大多连续地被表征的。在SF连续体极端处具有SF偏好的区域被不超过(3/4)毫米分隔开(符合皮层组织的超柱描述),并且经常在方向偏好的皮层图中的风车中心奇点处被发现。皮层图的组织允许几乎所有方向和SF偏好的组合在V1中被表征,并且V1中SF偏好的总体排列表明,在心理物理学实验中发现的特定于SF的适应效应,可能由给定SF域内的局部相互作用来解释。通过使用与电生理学和心理物理学研究中不同的SF偏好定义重新分析我们的数据,我们可以重现早期研究提出的不同SF组织。

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