Retinal Retina

The retina is a light-sensitive neural tissue at the back of the eye that converts visual information into signals for the brain, making it a central subject in neuroscience. Photoreceptor cells, including rods and cones, absorb photons and initiate phototransduction, while interconnected retinal neurons process contrast, color, movement, and spatial patterns before signals travel through the optic nerve. Studying retinal circuits helps researchers understand sensory coding, vision, and neurodegeneration, while retinal imaging, electrophysiology, and disease models support the diagnosis of conditions such as retinal degeneration and guide development of gene therapies, prosthetic devices, and other vision-restoring interventions.

Retinal Retina - Related Videos

Research

JoVE Journal - Medicine
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Retinal Detachment Model in Rodents by Subretinal Injection of Sodium Hyaluronate

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Cited by 44 •

2013

Creating experimental retinal detachments with a reproducible and sustained height of detachment, and without subretinal hemorrhage, is important for studying the pathophysiology of photoreceptor cell loss in retinal disease and evaluating potential therapeutic interventions. Here, we report such a method in detail.

Research

JoVE Journal - Neuroscience
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Split Retina as an Improved Flatmount Preparation for Studying Inner Nuclear Layer Neurons in Vertebrate Retina

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2024

This work presents an alternative flatmount retina preparation in which the removal of photoreceptor cell bodies enables faster antibody diffusion and improved patch pipette access to inner retinal neurons for immunohistochemistry, in situ hybridization, and electrophysiology experiments.

Research

JoVE Journal - Biology

In Ovo Electroporation in Embryonic Chick Retina

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Cited by 10 •

2012

The overall goal of this video is to show how to perform targeted retinal injection and in ovo electroporation of DNA/RNA constructs into the chick embryonic retina at the Hamburger and Hamilton stage 22-23, which is about embryonic day 4 (E4). This technique is very useful to study gene expression, gene regulation, and morphological change in developing chick retina.

Research

JoVE Journal - Biology
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In vivo Electroporation of Morpholinos into the Adult Zebrafish Retina

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Cited by 42 •

2011

A method to conditionally knockdown a target protein’s expression in the adult zebrafish retina is described, which involves intravitreally injecting antisense morpholinos and electroporating them into the retina. The resulting protein is knocked down for several days, which allows testing the protein’s role in the regenerating or intact retina.

Organotypic Culture of Full-thickness Adult Porcine Retina

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Cited by 19 •

2011

Here we describe a cost-effective technique for organotypic culture of adult porcine retina for seven days. Briefly, a sterile filter paper was used to lift the neural retina off from the RPE and place photoreceptor side up on an insert raised by a custom-made stand.

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