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An excitatory amacrine cell detects object motion and provides feature-selective input to ganglion cells in the mouse retina

机译:兴奋性无长突细胞检测物体运动并向鼠标视网膜中的神经节细胞提供特征选择输入

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摘要

Retinal circuits detect salient features of the visual world and report them to the brain through spike trains of retinal ganglion cells. The most abundant ganglion cell type in mice, the so-called W3 ganglion cell, selectively responds to movements of small objects. Where and how object motion sensitivity arises in the retina is incompletely understood. In this study, we use 2-photon-guided patch-clamp recordings to characterize responses of vesicular glutamate transporter 3 (VGluT3)-expressing amacrine cells (ACs) to a broad set of visual stimuli. We find that these ACs are object motion sensitive and analyze the synaptic mechanisms underlying this computation. Anatomical circuit reconstructions suggest that VGluT3-expressing ACs form glutamatergic synapses with W3 ganglion cells, and targeted recordings show that the tuning of W3 ganglion cells' excitatory input matches that of VGluT3-expressing ACs' responses. Synaptic excitation of W3 ganglion cells is diminished, and responses to object motion are suppressed in mice lacking VGluT3. Object motion, thus, is first detected by VGluT3-expressing ACs, which provide feature-selective excitatory input to W3 ganglion cells.>DOI:
机译:视网膜回路检测视觉世界的显着特征,并通过视网膜神经节细胞的尖峰序列将其报告给大脑。小鼠中最丰富的神经节细胞类型,即所谓的W3神经节细胞,选择性地响应小物体的运动。视网膜在何处以及如何出现物体运动敏感性尚不完全清楚。在这项研究中,我们使用2光子指导的膜片钳记录来表征表达囊泡谷氨酸转运蛋白3(VGluT3)的无长突细胞(AC)对广泛的视觉刺激的反应。我们发现这些AC对对象运动敏感,并分析了此计算所基于的突触机制。解剖电路重建表明,表达VGluT3的AC与W3神经节细胞形成谷氨酸能突触,并且有针对性的记录显示,调节W3神经节细胞的兴奋性输入与表达VGluT3的AC的反应相匹配。在缺少VGluT3的小鼠中,W3神经节细胞的突触兴奋减少,并且对物体运动的反应受到抑制。因此,首先通过表达VGluT3的AC来检测物体的运动,这些AC向W3神经节细胞提供特征选择性的兴奋性输入。> DOI:

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