Retinal Function

Retinal function is the process by which the retina detects light and converts it into neural signals that support vision. Photoreceptor cells, including rods and cones, transduce photons into electrical changes, while retinal circuits involving bipolar, horizontal, amacrine, and ganglion cells refine information about intensity, color, contrast, and movement before transmitting it through the optic nerve. Studying retinal function helps neuroscientists understand sensory processing, visual disorders, and connections between the eye and brain. Experimental measurements of retinal responses also support research on retinal degeneration, visual prostheses, neuroprotective treatments, and emerging strategies for restoring sight.

Retinal Function - Related Videos

Research

JoVE Journal - Immunology and Infection

Assessing Retinal Microglial Phagocytic Function In Vivo Using a Flow Cytometry-based Assay

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Cited by 4 •

2016

Microglial phagocytosis is critical for the maintenance of tissue homeostasis and inadequate phagocytic function has been implicated in pathology. However, assessing microglia function in vivo is technically challenging. We have developed a simple but robust technique for precisely monitoring and quantifying the phagocytic potential of microglia in a physiological setting.

Using Retinal Imaging to Study Dementia

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Cited by 19 •

2017

The retina shares prominent similarities with the brain and thus represents a unique window to study vasculature and neuronal structure in the brain non-invasively. This protocol describes a method to study dementia using retinal imaging techniques. This method can potentially aid in diagnosis and risk assessment of dementia.

Preparation of Mouse Retinal Cryosections to Assess Retinal Permeability to Adeno-Associated Virus

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2026

Source: Vacca, O., et al. Using Adeno-associated Virus as a Tool to Study Retinal Barriers in Disease. J. Vis. Exp. (2015)This video demonstrates the step-by-step procedure for preparing mouse retinal cryosections to visualize adeno-associated virus permeability across disrupted retinal barriers.

An Isolated Retinal Preparation to Record Light Response from Genetically Labeled Retinal Ganglion Cells

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Cited by 26 •

2011

This article provides a description of how to dissect and record from the isolated retinal preparation in mouse. In particular, we describe how to record light responses from a fluorescently labeled ganglion cell population and subsequently identify and analyze its morphology.

Morphometric Analyses of Retinal Sections

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Cited by 6 •

2012

This video demonstrates three types of morphometric analyses of the retina, which include measuring the inner nuclear layer thickness, quantifying the number of retinal ganglion cells (RGCs) and measuring the sizes of RGCs. The technique can offer a simple but scientific platform for morphometric analyses.

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