Ex Vivo Erg

Ex vivo electroretinography (ERG) is a laboratory method that records light-evoked electrical activity from an isolated retina, allowing researchers to assess retinal function outside the intact eye. In a typical preparation, retinal tissue is maintained in oxygenated physiological solution while electrodes measure voltage changes generated by photoreceptors and downstream neurons in response to controlled flashes or patterns of light; waveform components such as the a-wave and b-wave help distinguish cellular contributions. Ex vivo ERG supports neuroscience studies of visual signaling, retinal degeneration, synaptic physiology, and responses to potential therapies under defined experimental conditions.

Ex Vivo Erg - Related Videos

Research

JoVE Journal - Neuroscience

Simultaneous ex vivo Functional Testing of Two Retinas by in vivo Electroretinogram System

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Cited by 36 •

2015

Ex vivo ERG can be used to record electrical activity of retinal cells directly from isolated intact retinas of animals or humans. We demonstrate here how common in vivo ERG systems can be adapted for ex vivo ERG recordings in order to dissect the electrical activity of retinal cells.

Transretinal ERG Recordings from Mouse Retina: Rod and Cone Photoresponses

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Cited by 22 •

2012

We describe a relatively simple method of transretinal electroretinogram (ERG) recordings for obtaining rod and cone photoresponses from intact mouse retina. This approach takes advantage of the block of synaptic transmission from photoreceptors to isolate their light responses and record them using field electrodes placed across the isolated flat-mounted retina.

Direct-Coupled Electroretinogram (DC-ERG) for Recording the Light-Evoked Electrical Responses of the Mouse Retinal Pigment Epithelium

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Cited by 2 •

2020

Here, we present a method for recording light-evoked electrical responses of the retinal pigment epithelium (RPE) in mice using a technique known as DC-ERGs first described by Marmorstein, Peachey, and colleagues in the early 2000s.

In vivo 19F MRI for Cell Tracking

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Cited by 21 •

2013

We describe a general protocol for in vivo cell tracking using MRI in a mouse model with ex vivo labeled cells. A typical protocol for cell labeling, image acquisition processing and quantification is included.

The c-FOS Protein Immunohistological Detection: A Useful Tool As a Marker of Central Pathways Involved in Specific Physiological Responses In Vivo and Ex Vivo

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Cited by 44 •

2016

Here, we present a protocol based on c-FOS protein immunohistological detection, a classical technique used for the identification of neuronal populations involved in specific physiological responses in vivo and ex vivo.

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