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

Loss of Gap Junction Delta-2 (GJD2) gene orthologs leads to refractive  error in zebrafish | Communications Biology
Loss of Gap Junction Delta-2 (GJD2) gene orthologs leads to refractive error in zebrafish | Communications Biology

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

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

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

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

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

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

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

Interactions of cone cannabinoid CB1 and dopamine D4 receptors increase  day/night difference in rod‐cone gap junction coupling in goldfish retina -  Cao - - The Journal of Physiology - Wiley Online Library
Interactions of cone cannabinoid CB1 and dopamine D4 receptors increase day/night difference in rod‐cone gap junction coupling in goldfish retina - Cao - - The Journal of Physiology - Wiley Online Library

Dopaminergic modulation of retinal processing from starlight to sunlight -  ScienceDirect
Dopaminergic modulation of retinal processing from starlight to sunlight - ScienceDirect

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

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

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

Retinal pathway defects alter dopamine signaling and susceptibility to... |  Download Scientific Diagram
Retinal pathway defects alter dopamine signaling and susceptibility to... | 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

Beyond eye gaze: What else can eyetracking reveal about cognition and  cognitive development? - ScienceDirect
Beyond eye gaze: What else can eyetracking reveal about cognition and cognitive development? - ScienceDirect

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

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

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

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

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

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 | 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