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恒河猴外纹状视区 V5/MT 的长程簇状连接。

Long-range clustered connections within extrastriate visual area V5/MT of the rhesus macaque.

机构信息

Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford OX1 3PT, UK.

出版信息

Cereb Cortex. 2012 Jan;22(1):60-73. doi: 10.1093/cercor/bhr072. Epub 2011 May 12.

DOI:10.1093/cercor/bhr072
PMID:21571693
Abstract

Visual area V5/MT in the rhesus macaque has a distinct functional organization, where neurons with specific preferences for direction of motion and binocular disparity are co-organized in columns or clusters. Here, we analyze the pattern of intrinsic connectivity within cortical area V5/MT in both parasagittal sections of the intact brain and tangential sections from flatmounted cortex using small injections of the retrograde tracer cholera toxin subunit b. Labeled cells were predominantly found in cortical layers 2, 3, and 6. Going along the cortical layers, labeled cells were concentrated in regularly spaced clusters. The clusters nearest to the injection site were approximately 2 mm from its center. In flatmounted cortex, along the dorsoventral axis of V5/MT, we identified further clusters of labeled cells up to 10 mm from the injection site. Quantitative analysis of parasagittal sections estimated average cluster spacing at 2.2 mm; in cortical flatmounts, spacing was 2.3 mm measured radially from the injection site. The results suggest a regular pattern of intrinsic connectivity within V5/MT, which is consistent with connectivity between sites with a common preference for both direction of motion and binocular depth. The long-range connections can potentially account for the large suppressive surrounds of V5/MT neurons.

摘要

恒河猴视区 V5/MT 具有独特的功能组织,其中具有特定运动方向和双眼视差偏好的神经元在柱或簇中共同组织。在这里,我们使用逆行示踪剂霍乱毒素亚单位 b 分析了完整大脑的矢状切片和来自平面皮层的切向切片中皮层 V5/MT 内的固有连接模式。标记的细胞主要位于皮质层 2、3 和 6 中。沿着皮质层,标记的细胞集中在规则间隔的簇中。离注射部位最近的簇距其中心约 2 毫米。在平面皮层中,在 V5/MT 的背腹轴上,我们从注射部位识别出更远的标记细胞簇,距离可达 10 毫米。对矢状切片的定量分析估计平均簇间距为 2.2 毫米;在皮质平面中,从注射部位径向测量的间距为 2.3 毫米。结果表明 V5/MT 内存在规则的固有连接模式,这与具有共同运动方向和双眼深度偏好的部位之间的连接一致。长程连接可能解释了 V5/MT 神经元的大抑制环绕。

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