Retinal Photoreceptors

Retinal photoreceptors are specialized neurons in the eye that convert light into electrical signals, forming the first stage of visual processing in neuroscience. Rods support sensitive, low-light vision, while cones operate in brighter conditions and encode color; when photons activate opsins, a phototransduction cascade changes cyclic GMP levels, closes ion channels, and hyperpolarizes the cell. These signals pass through retinal circuits to ganglion cells, whose axons form the optic nerve and transmit visual information to the brain. Studying photoreceptors clarifies visual function and supports research into retinal disorders, including inherited degeneration, as well as strategies for diagnosis, treatment, and vision restoration.

Retinal Photoreceptors - Related Videos

Research

JoVE Journal - Neuroscience
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Simultaneous Whole-cell Recordings from Photoreceptors and Second-order Neurons in an Amphibian Retinal Slice Preparation

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Cited by 29 •

2013

We describe the preparation of thin retinal slices from aquatic tiger salamanders (Ambystoma tigrinum) and explain how we use these slices to study synaptic processing in the retina by obtaining dual whole-cell voltage clamp recordings from photoreceptors and second-order horizontal and bipolar cells.

Research

JoVE EoE - Neurophysiology

Electrophysiological Recording of Voltage Responses of Drosophila Retinal Photoreceptors to Light Stimuli

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2025

This video outlines the protocol for electrophysiological recording of photoreceptor activity in the eye of an immobilized Drosophila, enabling precise measurement of voltage changes in response to light stimuli.

Two-Photon Microscopy for Monitoring Calcium Dynamics in Mouse Retinal Cone Photoreceptors

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2025

Source: Kulkarni, M. et al. Imaging Ca2+ Dynamics in Cone Photoreceptor Axon Terminals of the Mouse Retina. J. Vis. Exp. (2015)This video demonstrates the use of two-photon microscopy to monitor calcium dynamics in cone photoreceptors of a transgenic mouse retina. It outlines the steps for preparing retinal slices, imaging FRET-based calcium biosensors, and analyzing fluorescence changes to quantify calcium levels under background illumination and light stimulation.

Research

JoVE Journal - Neuroscience
Free Sample

Imaging Ca2+ Dynamics in Cone Photoreceptor Axon Terminals of the Mouse Retina

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Cited by 24 •

2015

We describe a protocol to monitor Ca2+ dynamics in the axon terminals of cone photoreceptors using an ex-vivo slice preparation of the mouse retina. This protocol allows comprehensive studies of cone Ca2+ signaling in an important mammalian model system, the mouse.

Subretinal Transplantation of MACS Purified Photoreceptor Precursor Cells into the Adult Mouse Retina

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Cited by 43 •

2014

Cell transplantation represents a strategy for the treatment of retinal degeneration characterized by photoreceptor loss. Here we describe a method for enrichment of transplantable photoreceptors and their subretinal grafting into adult mice.

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