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灵长类动物 V4 的曲率处理区域。

Curvature-processing domains in primate V4.

机构信息

State Key Laboratory of Cognitive Neuroscience and Learning, IDG/MGovern Institute for Brain Research, Beijing Normal University, Beijing, China.

出版信息

Elife. 2020 Nov 19;9:e57502. doi: 10.7554/eLife.57502.

Abstract

Neurons in primate V4 exhibit various types of selectivity for contour shapes, including curves, angles, and simple shapes. How are these neurons organized in V4 remains unclear. Using intrinsic signal optical imaging and two-photon calcium imaging, we observed submillimeter functional domains in V4 that contained neurons preferring curved contours over rectilinear ones. These curvature domains had similar sizes and response amplitudes as orientation domains but tended to separate from these regions. Within the curvature domains, neurons that preferred circles or curve orientations clustered further into finer scale subdomains. Nevertheless, individual neurons also had a wide range of contour selectivity, and neighboring neurons exhibited a substantial diversity in shape tuning besides their common shape preferences. In strong contrast to V4, V1 and V2 did not have such contour-shape-related domains. These findings highlight the importance and complexity of curvature processing in visual object recognition and the key functional role of V4 in this process.

摘要

灵长类动物 V4 中的神经元表现出对轮廓形状的各种选择性,包括曲线、角度和简单形状。V4 中的这些神经元是如何组织的尚不清楚。使用内源信号光学成像和双光子钙成像,我们观察到 V4 中的亚毫米功能域,其中包含对曲线轮廓的神经元偏好,而不是直线轮廓。这些曲率域具有与方向域相似的大小和响应幅度,但往往与这些区域分离。在曲率域内,更喜欢圆形或曲线方向的神经元进一步聚类成更精细的子域。然而,单个神经元也具有广泛的轮廓选择性,并且除了它们的共同形状偏好之外,相邻神经元在形状调谐方面也表现出很大的多样性。与 V4 形成鲜明对比的是,V1 和 V2 没有这种与轮廓形状相关的区域。这些发现强调了曲率处理在视觉物体识别中的重要性和复杂性,以及 V4 在这个过程中的关键功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e648/7707829/5d34b064bca2/elife-57502-fig1.jpg

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