Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea; Program of Brain and Cognitive Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.
Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.
Cell Rep. 2021 Jan 5;34(1):108581. doi: 10.1016/j.celrep.2020.108581.
In higher mammals, the primary visual cortex (V1) is organized into diverse tuning maps of visual features. The topography of these maps intersects orthogonally, but it remains unclear how such a systematic relationship can develop. Here, we show that the orthogonal organization already exists in retinal ganglion cell (RGC) mosaics, providing a blueprint of the organization in V1. From analysis of the RGC mosaics data in monkeys and cats, we find that the ON-OFF RGC distance and ON-OFF angle of neighboring RGCs are organized into a topographic tiling across mosaics, analogous to the orthogonal intersection of cortical tuning maps. Our model simulation shows that the ON-OFF distance and angle in RGC mosaics correspondingly initiate ocular dominance/spatial frequency tuning and orientation tuning, resulting in the orthogonal intersection of cortical tuning maps. These findings suggest that the regularly structured ON-OFF patterns mirrored from the retina initiate the uniform representation of combinations of map features over the visual space.
在高等哺乳动物中,初级视皮层 (V1) 组织成不同的视觉特征调谐图。这些图谱的拓扑结构正交相交,但目前尚不清楚这种系统的关系是如何发展的。在这里,我们表明,这种正交组织已经存在于视网膜神经节细胞 (RGC) 镶嵌图中,为 V1 中的组织提供了蓝图。通过对猴子和猫的 RGC 镶嵌图数据的分析,我们发现,相邻 RGC 的 ON-OFF RGC 距离和 ON-OFF 角度组织成镶嵌图中的拓扑平铺,类似于皮层调谐图的正交交叉。我们的模型模拟表明,RGC 镶嵌图中的 ON-OFF 距离和角度相应地启动了眼优势/空间频率调谐和方向调谐,从而导致皮层调谐图的正交交叉。这些发现表明,从视网膜反射出的规则结构的 ON-OFF 模式启动了视觉空间上的地图特征组合的均匀表示。