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猕猴视觉区域V2的内在皮质连接:不同功能流之间相互作用的证据。

Intrinsic cortical connections in macaque visual area V2: evidence for interaction between different functional streams.

作者信息

Levitt J B, Yoshioka T, Lund J S

机构信息

Department of Visual Science, University of London, England.

出版信息

J Comp Neurol. 1994 Apr 22;342(4):551-70. doi: 10.1002/cne.903420405.

Abstract

Area V2 of macaque visual cortex represents an important but poorly understood stage in visual processing. To provide a better understanding of the region, we studied the organization of its intrinsic cortical connections by making focal (200-300 microns) iontophoretic microinjections of the tracer biocytin. Alternate tissue sections were tested for biocytin, cytochrome oxidase (CO), or Cat-301 immunoreactivity to localize biocytin label relative to the three stripelike compartments that characterize this area. Biocytin-labeled pyramidal neurons of layers 2/3, and, to a lesser extent, layer 5, provided laterally spreading axon projections that terminated in discrete patches (250-300 microns diameter), primarily in layers 1-3. Any injected locus in V2 projected to 10-15 similarly sized patches, up to 4 mm from the injection site, and distributed in an elongated field orthogonal to the stripe compartments. We noted prominent patchy connections within, as well as between, individual compartments, perhaps reflecting functional substructures within stripes. Each stripe compartment projected to all three compartments but with different relative frequencies; CO-rich compartments projected mainly to other CO-rich compartments (75%), whereas CO-poor compartments projected equally to CO-rich and CO-poor compartments. We therefore emphasize the existence of substantial interconnections among all three V2 compartments. As further evidence for crosstalk between visual channels, we also noted an input to the V2 "thick" CO stripes from V1 cells in layer 4A as a distinct population in addition to the neurons of layer 4B. Thus, the CO stripe architecture may not be a marker for strictly segregated parallel visual pathways through V2.

摘要

猕猴视觉皮层的V2区代表了视觉处理过程中一个重要但尚未被充分理解的阶段。为了更好地了解该区域,我们通过对示踪剂生物胞素进行局部(200 - 300微米)离子电渗显微注射,研究了其内在皮质连接的组织方式。对交替的组织切片进行生物胞素、细胞色素氧化酶(CO)或Cat - 301免疫反应性检测,以相对于表征该区域的三个条纹状区室定位生物胞素标记。2/3层以及程度较轻的5层中生物胞素标记的锥体神经元提供了横向扩展的轴突投射,这些投射终止于离散的斑块(直径250 - 300微米),主要在1 - 3层。V2区的任何注射位点都投射到10 - 15个大小相似的斑块,距离注射位点可达4毫米,并分布在与条纹区室正交的细长区域内。我们注意到各个区室内部以及之间都有明显的斑块状连接,这可能反映了条纹内的功能亚结构。每个条纹区室都投射到所有三个区室,但相对频率不同;富含CO的区室主要投射到其他富含CO的区室(75%),而CO含量低的区室则同等地投射到富含CO和CO含量低的区室。因此,我们强调所有三个V2区室之间存在大量的相互连接。作为视觉通道之间串扰的进一步证据,我们还注意到,除了4B层的神经元外,4A层的V1细胞作为一个独特的群体,向V

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