Peking University School of Life Sciences, Beijing, China.
Peking-Tsinghua Center for Life Sciences, Beijing, China.
Elife. 2021 May 17;10:e63798. doi: 10.7554/eLife.63798.
The ventral visual pathway is crucially involved in integrating low-level visual features into complex representations for objects and scenes. At an intermediate stage of the ventral visual pathway, V4 plays a crucial role in supporting this transformation. Many V4 neurons are selective for shape segments like curves and corners; however, it remains unclear whether these neurons are organized into clustered functional domains, a structural motif common across other visual cortices. Using two-photon calcium imaging in awake macaques, we confirmed and localized cortical domains selective for curves or corners in V4. Single-cell resolution imaging confirmed that curve- or corner-selective neurons were spatially clustered into such domains. When tested with hexagonal-segment stimuli, we find that stimulus smoothness is the cardinal difference between curve and corner selectivity in V4. Combining cortical population responses with single-neuron analysis, our results reveal that curves and corners are encoded by neurons clustered into functional domains in V4. This functionally specific population architecture bridges the gap between the early and late cortices of the ventral pathway and may serve to facilitate complex object recognition.
腹侧视觉通路对于将低水平视觉特征整合到物体和场景的复杂表示中至关重要。在腹侧视觉通路的中间阶段,V4 在支持这种转变方面起着至关重要的作用。许多 V4 神经元对形状段(如曲线和拐角)具有选择性;然而,这些神经元是否组织成聚类的功能域,这是一种常见于其他视觉皮层的结构模式,仍不清楚。我们使用清醒猕猴的双光子钙成像技术,证实并定位了 V4 中选择性地对曲线或拐角进行反应的皮质域。单细胞分辨率成像证实,曲线或拐角选择性神经元在空间上聚类到这些域中。当用六边形状的刺激物进行测试时,我们发现刺激物的平滑度是 V4 中曲线和拐角选择性的主要区别。我们将皮层群体反应与单个神经元分析相结合,结果表明,曲线和拐角是由聚类到 V4 功能域中的神经元进行编码的。这种具有特定功能的群体结构架起了腹侧通路早期和晚期皮层之间的桥梁,可能有助于促进复杂的物体识别。