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1. Cell numbers, cell ratios, and developmental plasticity in the rod pathway of the mouse retina

2. The Variety of Mechanosensitive Ion Channels in Retinal Neurons.

3. Distinct inhibitory pathways control velocity and directional tuning in the mouse retina

4. Biotin-cGMP and -cAMP are able to permeate through the gap junctions of some amacrine cells in the mouse retina despite their large size

5. Generating and Using Transcriptomically Based Retinal Cell Atlases

6. A model of amacrine cells for orientation detection

7. Overexpressing NeuroD1 reprograms Müller cells into various types of retinal neurons

8. A model of amacrine cells for orientation detection.

9. Serotonin is a gap junction-permeable neuronal tracer in the mouse retina

11. Reduced Expression of TMEM16A Impairs Nitric Oxide-Dependent Cl- Transport in Retinal Amacrine Cells.

12. Reduced Expression of TMEM16A Impairs Nitric Oxide-Dependent Cl− Transport in Retinal Amacrine Cells

13. Retinal neurons establish mosaic patterning by excluding homotypic somata from their dendritic territories.

14. An uncommon neuronal class conveys visual signals from rods and cones to retinal ganglion cells.

15. The Synaptic and Morphological Basis of Orientation Selectivity in a Polyaxonal Amacrine Cell of the Rabbit Retina

16. Adenylate Cyclase 1 Links Calcium Signaling to CFTR-Dependent Cytosolic Chloride Elevations in Chick Amacrine Cells

17. Zfhx3 modulates retinal sensitivity and circadian responses to light.

18. Adenylate Cyclase 1 Links Calcium Signaling to CFTR-Dependent Cytosolic Chloride Elevations in Chick Amacrine Cells.

21. Photoreceptive Ganglion Cells Drive Circuits for Local Inhibition in the Mouse Retina.

22. Immunohistochemical identification and synaptic inputs to the diffuse bipolar cell type DB1 in macaque retina

23. Increased Connexin36 Phosphorylation in AII Amacrine Cell Coupling of the Mouse Myopic Retina

24. Connectomic analysis reveals an interneuron with an integral role in the retinal circuit for night vision

25. Transience of the Retinal Output Is Determined by a Great Variety of Circuit Elements

26. Expression and distribution of trophoblast glycoprotein in the mouse retina.

27. Increased Connexin36 Phosphorylation in AII Amacrine Cell Coupling of the Mouse Myopic Retina.

28. A retinal circuit for the suppressed-by-contrast receptive field of a polyaxonal amacrine cell.

29. A Retina Inspired Model for High Dynamic Range Image Rendering

32. The Biochemistry of the Eye

33. Editorial: How do we see? Morphology and physiology of retinal neurons

34. High-Resolution Synaptic Connectomics

37. Inhibitory Control of Feature Selectivity in an Object Motion Sensitive Circuit of the Retina

39. Gap Junctions in A8 Amacrine Cells Are Made of Connexin36 but Are Differently Regulated Than Gap Junctions in AII Amacrine Cells

40. Expression and Roles of Teneurins in Zebrafish

41. Expression and Roles of the Immunoglobulin Superfamily Recognition Molecule Sidekick1 in Mouse Retina

42. Biotin-cGMP and -cAMP are able to permeate through the gap junctions of some amacrine cells in the mouse retina despite their large size.

43. Starburst amacrine cells amplify optogenetic visual restoration through gap junctions

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