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Molecular and functional architecture of the mouse photoreceptor network
Molecular and functional architecture of the mouse photoreceptor network

The Role of Dopamine in Retinal Function By Elka Popova – Webvision
The Role of Dopamine in Retinal Function By Elka Popova – Webvision

The diverse functional roles and regulation of neuronal gap junctions in  the retina | Nature Reviews Neuroscience
The diverse functional roles and regulation of neuronal gap junctions in the retina | Nature Reviews Neuroscience

A Self-Regulating Gap Junction Network of Amacrine Cells Controls Nitric  Oxide Release in the Retina - ScienceDirect
A Self-Regulating Gap Junction Network of Amacrine Cells Controls Nitric Oxide Release in the Retina - ScienceDirect

Frontiers | Functional Organization of the Sympathetic Pathways Controlling  the Pupil: Light-Inhibited and Light-Stimulated Pathways | Neurology
Frontiers | Functional Organization of the Sympathetic Pathways Controlling the Pupil: Light-Inhibited and Light-Stimulated Pathways | Neurology

Frontiers | Dopamine-Mediated Circadian and Light/Dark-Adaptive Modulation  of Chemical and Electrical Synapses in the Outer Retina | Cellular  Neuroscience
Frontiers | Dopamine-Mediated Circadian and Light/Dark-Adaptive Modulation of Chemical and Electrical Synapses in the Outer Retina | Cellular Neuroscience

Illustration of the events leading to opening and closing of gap... |  Download Scientific Diagram
Illustration of the events leading to opening and closing of gap... | Download Scientific Diagram

The diverse functional roles and regulation of neuronal gap junctions in  the retina. - Abstract - Europe PMC
The diverse functional roles and regulation of neuronal gap junctions in the retina. - Abstract - Europe PMC

PDF) Modulation of connexon densities in gap junctions of horizontal cell  perikarya and axon terminals in fish retina: effects of light/dark cycles,  interruption of the optic nerve and application of dopamine
PDF) Modulation of connexon densities in gap junctions of horizontal cell perikarya and axon terminals in fish retina: effects of light/dark cycles, interruption of the optic nerve and application of dopamine

The diverse functional roles and regulation of neuronal gap junctions in  the retina | Nature Reviews Neuroscience
The diverse functional roles and regulation of neuronal gap junctions in the retina | Nature Reviews Neuroscience

Myriad Roles for Gap Junctions in Retinal Circuits by Stuart Trenholm and  Gautam B. Awatramani – Webvision
Myriad Roles for Gap Junctions in Retinal Circuits by Stuart Trenholm and Gautam B. Awatramani – Webvision

Schematic of the retinal circuitry with cell types expressing specific... |  Download Scientific Diagram
Schematic of the retinal circuitry with cell types expressing specific... | Download Scientific Diagram

Temporal profiles of (A) melatonin and (B) dopamine content (± SEM; n =...  | Download Scientific Diagram
Temporal profiles of (A) melatonin and (B) dopamine content (± SEM; n =... | Download Scientific Diagram

Adenosine and Dopamine Receptors Coregulate Photoreceptor Coupling via Gap  Junction Phosphorylation in Mouse Retina | Journal of Neuroscience
Adenosine and Dopamine Receptors Coregulate Photoreceptor Coupling via Gap Junction Phosphorylation in Mouse Retina | Journal of Neuroscience

The Role of Dopamine in Retinal Function By Elka Popova – Webvision
The Role of Dopamine in Retinal Function By Elka Popova – Webvision

Myriad Roles for Gap Junctions in Retinal Circuits by Stuart Trenholm and  Gautam B. Awatramani – Webvision
Myriad Roles for Gap Junctions in Retinal Circuits by Stuart Trenholm and Gautam B. Awatramani – Webvision

Myriad roles for gap junctions in retinal circuits. Stuart Trenholm, Ph.D.  and Gautam B. Awatramani, Ph.D. - Webvision
Myriad roles for gap junctions in retinal circuits. Stuart Trenholm, Ph.D. and Gautam B. Awatramani, Ph.D. - Webvision

Adenosine and Dopamine Receptors Coregulate Photoreceptor Coupling via Gap  Junction Phosphorylation in Mouse Retina | Journal of Neuroscience
Adenosine and Dopamine Receptors Coregulate Photoreceptor Coupling via Gap Junction Phosphorylation in Mouse Retina | Journal of Neuroscience

Adenosine and Dopamine Receptors Coregulate Photoreceptor Coupling via Gap  Junction Phosphorylation in Mouse Retina | Journal of Neuroscience
Adenosine and Dopamine Receptors Coregulate Photoreceptor Coupling via Gap Junction Phosphorylation in Mouse Retina | Journal of Neuroscience

The cell. More information. Gap junctions. Atlas of Plant and Animal  Histology
The cell. More information. Gap junctions. Atlas of Plant and Animal Histology

Rod Photoreceptor Activation Alone Defines the Release of Dopamine in the  Retina - ScienceDirect
Rod Photoreceptor Activation Alone Defines the Release of Dopamine in the Retina - ScienceDirect

Decision-related pupil dilation reflects upcoming choice and individual  bias | PNAS
Decision-related pupil dilation reflects upcoming choice and individual bias | PNAS

Frontiers | Dopamine-Mediated Circadian and Light/Dark-Adaptive Modulation  of Chemical and Electrical Synapses in the Outer Retina | Cellular  Neuroscience
Frontiers | Dopamine-Mediated Circadian and Light/Dark-Adaptive Modulation of Chemical and Electrical Synapses in the Outer Retina | Cellular Neuroscience

Frontiers | Increased Connexin36 Phosphorylation in AII Amacrine Cell  Coupling of the Mouse Myopic Retina | Cellular Neuroscience
Frontiers | Increased Connexin36 Phosphorylation in AII Amacrine Cell Coupling of the Mouse Myopic Retina | Cellular Neuroscience

An opsin 5–dopamine pathway mediates light-dependent vascular development  in the eye | Nature Cell Biology
An opsin 5–dopamine pathway mediates light-dependent vascular development in the eye | Nature Cell Biology

Gap Junction Coupling Shapes the Encoding of Light in the Developing Retina  - ScienceDirect
Gap Junction Coupling Shapes the Encoding of Light in the Developing Retina - ScienceDirect

The Science Behind Myopia. Brittany J. Carr and William K. Stell - Webvision
The Science Behind Myopia. Brittany J. Carr and William K. Stell - Webvision

Frontiers | Increased Connexin36 Phosphorylation in AII Amacrine Cell  Coupling of the Mouse Myopic Retina | Cellular Neuroscience
Frontiers | Increased Connexin36 Phosphorylation in AII Amacrine Cell Coupling of the Mouse Myopic Retina | Cellular Neuroscience