Saha Aindrila, Zuniga Juan, Mian Kainat, Zhai Haoshen, Derr Paul J, Hoon Mrinalini, Sinha Raunak
Department of Neuroscience, University of Wisconsin, Madison, WI, USA.
McPherson Eye Research Institute, University of Wisconsin, Madison, WI, USA.
iScience. 2023 Oct 2;26(11):108113. doi: 10.1016/j.isci.2023.108113. eCollection 2023 Nov 17.
Sensitivity of primate daylight vision varies across the visual field. This is attributed to regional variations in cone photoreceptor density and synaptic connectivity of the underlying circuitry. In contrast, we have limited understanding of how synapse organization of the primate night vision pathway changes across space. Using serial electron microscopy, we reconstructed the first synapse of the night vision pathway between rod photoreceptors and second-order neurons, at multiple locations from the central part of the primate retina, fovea, to the periphery. We find that most facets of the rod synapse connectivity vary across retinal regions. However, rod synaptic divergence and convergence patterns do not change in the same manner across locations. Moreover, patterns of rod synapse organization are tightly correlated with photoreceptor density. Such regional heterogeneities revise the connectivity diagram of the primate rod synapse which will shape synapse function and sensitivity of the night vision pathway across visual space.
灵长类动物的昼光视觉敏感度在整个视野范围内存在差异。这归因于视锥光感受器密度和基础神经回路突触连接性的区域差异。相比之下,我们对灵长类动物夜视通路的突触组织如何随空间变化了解有限。利用连续电子显微镜,我们重建了从灵长类动物视网膜中央部分(中央凹)到周边多个位置的视杆光感受器与二级神经元之间夜视通路的首个突触。我们发现视杆突触连接性的大多数方面在视网膜区域间存在差异。然而,视杆突触的发散和汇聚模式在不同位置并非以相同方式变化。此外,视杆突触组织模式与光感受器密度紧密相关。这种区域异质性修正了灵长类动物视杆突触的连接图,这将塑造整个视觉空间中夜视通路的突触功能和敏感度。