Department of Radiology, Washington University in St. Louis, St. Louis, MO, 63110, USA.
Peng Cheng Laboratory, Shenzhen, 518000, China.
Commun Biol. 2024 Oct 4;7(1):1259. doi: 10.1038/s42003-024-06980-2.
Foveal and peripheral vision are two distinct modes of visual processing essential for navigating the world. However, it remains unclear if they engage different neural mechanisms and circuits within the visual attentional system. Here, we trained macaques to perform a free-gaze visual search task using natural face and object stimuli and recorded a large number of 14588 visually responsive units from a broadly distributed network of brain regions involved in visual attentional processing. Foveal and peripheral units had substantially different proportions across brain regions and exhibited systematic differences in encoding visual information and visual attention. The spike-local field potential (LFP) coherence of foveal units was more extensively modulated by both attention and visual selectivity, thus indicating differential engagement of the attention and visual coding network compared to peripheral units. Furthermore, we delineated the interaction and coordination between foveal and peripheral processing for spatial attention and saccade selection. Together, the systematic differences between foveal and peripheral processing provide valuable insights into how the brain processes and integrates visual information from different regions of the visual field.
中央视觉和周边视觉是两种截然不同的视觉处理模式,对于在世界中导航至关重要。然而,目前尚不清楚它们是否在视觉注意力系统内涉及不同的神经机制和回路。在这里,我们训练猕猴使用自然面孔和物体刺激来执行自由凝视视觉搜索任务,并从广泛分布的大脑区域中记录了大量涉及视觉注意力处理的 14588 个对视觉有反应的单位。中央视觉和周边视觉单位在大脑区域中具有明显不同的比例,并且在视觉信息和视觉注意力的编码方面表现出系统差异。中央视觉单位的尖峰局部场电位 (LFP) 相干性受到注意力和视觉选择性的广泛调节,因此与周边视觉单位相比,注意力和视觉编码网络的参与程度不同。此外,我们还描绘了空间注意力和扫视选择中中央视觉和周边处理之间的相互作用和协调。总之,中央视觉和周边处理之间的系统差异为大脑如何处理和整合来自视野不同区域的视觉信息提供了有价值的见解。