Department of Psychology, Stanford University, Stanford, CA, USA.
Neurosciences Program, Stanford University, Stanford, CA, USA.
Nat Commun. 2021 Apr 15;12(1):2278. doi: 10.1038/s41467-021-22524-2.
Face-processing occurs across ventral and lateral visual streams, which are involved in static and dynamic face perception, respectively. However, the nature of spatial computations across streams is unknown. Using functional MRI and population receptive field (pRF) mapping, we measured pRFs in face-selective regions. Results reveal that spatial computations by pRFs in ventral face-selective regions are concentrated around the center of gaze (fovea), but spatial computations in lateral face-selective regions extend peripherally. Diffusion MRI reveals that these differences are mirrored by a preponderance of white matter connections between ventral face-selective regions and foveal early visual cortex (EVC), while connections with lateral regions are distributed more uniformly across EVC eccentricities. These findings suggest a rethinking of spatial computations in face-selective regions, showing that they vary across ventral and lateral streams, and further propose that spatial computations in high-level regions are scaffolded by the fine-grain pattern of white matter connections from EVC.
面部处理发生在腹侧和外侧视觉流中,分别涉及静态和动态面部感知。然而,跨流的空间计算的性质尚不清楚。使用功能磁共振成像和群体感受野 (pRF) 映射,我们测量了面部选择区域中的 pRF。结果表明,腹侧面部选择区域中的 pRF 进行的空间计算集中在注视中心(中央凹)周围,但外侧面部选择区域中的空间计算向外扩展。弥散磁共振成像显示,这些差异反映在腹侧面部选择区域和中央凹早期视觉皮层 (EVC) 之间的白质连接优势上,而与外侧区域的连接则更均匀地分布在 EVC 的偏心度上。这些发现表明对面部选择区域中空间计算的重新思考,表明它们在腹侧和外侧流之间存在差异,并进一步提出,高级区域中的空间计算是由 EVC 的白质连接的细粒度模式支撑的。