| Literature DB >> 33211007 |
Rendong Tang1, Qianling Song1, Ying Li1, Rui Zhang1, Xingya Cai1, Haidong D Lu1.
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.Entities:
Keywords: 2-photon imaging; ISOI; contour; functional column; functional map; macaque; neuroscience; rhesus macaque
Mesh:
Year: 2020 PMID: 33211007 PMCID: PMC7707829 DOI: 10.7554/eLife.57502
Source DB: PubMed Journal: Elife ISSN: 2050-084X Impact factor: 8.140