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猕猴初级视觉皮层中功能柱的解剖学基质。

Anatomical substrates for functional columns in macaque monkey primary visual cortex.

作者信息

Lund Jennifer S, Angelucci Alessandra, Bressloff Paul C

机构信息

Moran Eye Center, University of Utah, 50 North Medical Drive, Salt Lake City, UT 84132, USA.

出版信息

Cereb Cortex. 2003 Jan;13(1):15-24. doi: 10.1093/cercor/13.1.15.

Abstract

In this review we re-examine the concept of a cortical column in macaque primary visual cortex, and consider to what extent a functionally defined column reflects any sort of anatomical entity that subdivides cortical territory. Functional studies have shown that columns relating to different response properties are mapped in cortex at different spatial scales. We suggest that these properties first emerge in mid-layer 4C through a combination of thalamic afferent inputs and local intracortical circuitry, and are then transferred to other layers in a columnar fashion, via interlaminar relays, where additional processing occurs. However, several properties are not strictly columnar since they do not appear in all cortical layers. In contrast to the functional column, an anatomically based cortical column is defined most clearly in terms of the reciprocal connections it makes, both via intra-areal lateral connections and inter-areal feedback/feedforward pathways. The column boundaries are reinforced by interplay between lateral inhibition spreading beyond the column boundary and disinhibition within the column. The anatomical column acts as a functionally tuned unit and point of information collation from laterally offset regions and feedback pathways. Thalamic inputs provide the high-contrast receptive field sizes of the column's neurons, intra-areal lateral connections provide their low contrast summation field sizes, and feedback pathways provide surround modulation of receptive fields responses.

摘要

在本综述中,我们重新审视了猕猴初级视觉皮层中皮质柱的概念,并思考功能定义的柱在多大程度上反映了细分皮质区域的任何一种解剖实体。功能研究表明,与不同反应特性相关的柱在皮质中以不同的空间尺度进行映射。我们认为,这些特性首先通过丘脑传入输入和局部皮质内回路的组合在4C中层出现,然后通过层间中继以柱状方式转移到其他层,在那里会进行额外的处理。然而,有几个特性并非严格呈柱状分布,因为它们并非出现在所有皮质层中。与功能柱不同,基于解剖学的皮质柱最明确地是根据其通过区域内横向连接以及区域间反馈/前馈通路所形成的相互连接来定义的。柱边界通过扩散到柱边界之外的侧向抑制与柱内去抑制之间的相互作用而得到强化。解剖学柱充当功能调谐单元以及来自侧向偏移区域和反馈通路的信息整理点。丘脑输入提供柱神经元的高对比度感受野大小,区域内横向连接提供其低对比度总和野大小,而反馈通路提供感受野反应的周边调制。

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