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首页> 外文期刊>Visual Neuroscience: An International Journal for Empirical and Theoretical Research >Topographic organization of areas V3 and V4 and its relation to supra-areal organization of the primate visual system
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Topographic organization of areas V3 and V4 and its relation to supra-areal organization of the primate visual system

机译:地形v3和v4的地形组织及其与灵长类动物视觉系统的Supra-Araim组织的关系

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摘要

Areas V3 and V4 are commonly thought of as individual entities in the primate visual system, based on definition criteria such as their representation of visual space, connectivity, functional response properties, and relative anatomical location in cortex. Yet, large-scale functional and anatomical organization patterns not only emphasize distinctions within each area, but also links across visual cortex. Specifically, the visuotopic organization of V3 and V4 appears to be part of a larger, supra-areal organization, clustering these areas with early visual areas V1 and V2. In addition, connectivity patterns across visual cortex appear to vary within these areas as a function of their supra-areal eccentricity organization. This complicates the traditional view of these regions as individual functional "areas." Here, we will review the criteria for defi ning areas V3 and V4 and will discuss functional and anatomical studies in humans and monkeys that emphasize the integration of individual visual areas into broad, supra-areal clusters that work in concert for a common computational goal. Specifi cally, we propose that the visuotopic organization of V3 and V4, which provides the criteria for differentiating these areas, also unifies these areas into the supra-areal organization of early visual cortex. We propose that V3 and V4 play a critical role in this supra-areal organization by filtering information about the visual environment along parallel pathways across higher-order cortex.
机译:基于定义标准,地区V3和V4通常被认为是灵长类动物视觉系统中的个别实体,例如它们的视觉空间,连接,功能响应属性以及皮质中的相对解剖位置的陈述。然而,大规模的功能和解剖组织模式不仅强调每个区域内的区别,而且还在视觉皮层中联系起来。具体地,V3和V4的潜能缺失组织似乎是较大,上面的组织的一部分,具有早期视觉区域V1和V2的这些区域。此外,视觉皮质的连接模式似乎在这些区域内变化,作为其Supra-Areaim偏心组织的函数。这使得这些地区的传统观点成为个人功能“地区”。在这里,我们将审查Defi Ning领域V3和V4的标准,并将讨论人类和猴子的功能和解剖学研究,以强调个别视觉区域的整合到广泛的群体,以便协同计算普通的计算目标。具体情况下,我们建议v3和v4的扶赖组织提供区分这些地区的标准,还将这些地区统一到早期视觉皮层的Supra-Ireal组织中。我们提出V3和V4通过在沿着高阶皮质沿着平行路径的途径过滤有关视觉环境的信息来发挥关键作用。

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