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猴 V4 中的弯曲域。

Curvature domains in V4 of macaque monkey.

机构信息

Department of Neurology of the Second Affiliated Hospital, Interdisciplinary Institute of Neuroscience and Technology, School of Medicine, Zhejiang University, Hangzhou, China.

Key Laboratory for Biomedical Engineering, of Ministry of Education, Zhejiang University, Hangzhou, China.

出版信息

Elife. 2020 Nov 19;9:e57261. doi: 10.7554/eLife.57261.

Abstract

An important aspect of visual object recognition is the ability to perceive object shape. Two basic components of complex shapes are straight and curved contours. A large body of evidence suggests a modular hierarchy for shape representation progressing from simple and complex orientation in early areas V1 and V2, to increasingly complex stages of curvature representation in V4, TEO, and TE. Here, we reinforce and extend the concept of modular representation. Using intrinsic signal optical imaging in Macaque area V4, we find sub-millimeter sized modules for curvature representation that are organized from low to high curvatures as well as domains with complex curvature preference. We propose a possible 'curvature hypercolumn' within V4. In combination with previous studies, we suggest that the key emergent functions at each stage of cortical processing are represented in systematic, modular maps.

摘要

视觉物体识别的一个重要方面是感知物体形状的能力。复杂形状的两个基本组成部分是直线和曲线轮廓。大量证据表明,形状表示的模块化层次结构从早期 V1 和 V2 中的简单和复杂方向开始,然后发展到 V4、TEO 和 TE 中越来越复杂的曲率表示阶段。在这里,我们加强并扩展了模块化表示的概念。使用猕猴 V4 中的内禀信号光学成像,我们发现了曲率表示的亚毫米大小的模块,这些模块从低曲率到高曲率以及具有复杂曲率偏好的域进行组织。我们提出了 V4 中可能的“曲率超柱”。结合以前的研究,我们认为皮质处理的每个阶段的关键涌现功能都以系统的、模块化的图谱表示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5d7/7707819/b47c2eb7c8a6/elife-57261-fig1.jpg

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