Mouse Retina

The mouse 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 valuable model for studying vision and retinal disease. Its photoreceptors, interneurons, and ganglion cells form layered circuits that detect light, process features such as contrast, and transmit encoded activity through the optic nerve. Research using mouse retina examines retinal development, neural circuitry, degeneration, and responses to genetic or environmental changes. These studies support investigations of visual biology and help evaluate potential treatments for inherited retinal disorders and other causes of vision loss.

Mouse Retina - Related Videos

Research

JoVE EoE - Neuroimaging

Two-Photon In Vivo Imaging of the Mouse Retina

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2025

Source: Wang, Z., et al. Transpupillary Two-Photon In Vivo Imaging of the Mouse Retina. J. Vis. Exp. (2021).This video demonstrates a technique for in vivo retinal imaging using two-photon microscopy. Anesthetized mice are prepared for imaging by securing their heads, Applying eye lubricant, and placing a coverslip over the eye. Retinal ganglion cells (RGCs) expressing fluorescent proteins are first visualized using epifluorescence for alignment. Finally, two-photon imaging is employed,...

In vivo Electroporation of Developing Mouse Retina

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Cited by 33 •

2011

A method for the incorporation of plasmid DNA into murine retinal cells for the purpose of performing either gain- or loss of function studies in vivo is presented. This method capitalizes on the transient increase in permeability of cell plasma membranes induced by the application of an external electrical field.

Assessment of Vascular Regeneration in the CNS Using the Mouse Retina

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Cited by 7 •

2014

The rodent retina has long been recognized as an accessible window to the brain. In this technical paper we provide a protocol that employs the mouse model of oxygen-induced retinopathy to study the mechanisms that lead to failure of vascular regeneration within the central nervous system after ischemic injury. The described system can also be harnessed to explore strategies to promote regrowth of functional blood vessels within the retina and CNS.

Research

JoVE Journal - Biology
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Evisceration of Mouse Vitreous and Retina for Proteomic Analyses

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Cited by 39 •

2011

The dissection technique illustrates evisceration of the vitreous, retina, and lens from the mouse eye, separation by centrifugation, and characterization with protein assays.

In Vivo Imaging of the Mouse Retina Using Optical Coherence Tomography

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2025

Source: Jagodzinska, J., et. al., Optical Coherence Tomography: Imaging Mouse Retinal Ganglion Cells In Vivo. J. Vis. Exp. (2017) In this video, we demonstrate the use of spectral-domain optical coherence tomography (SD-OCT) to image retinal layers and assess structural changes in a genetically modified mouse model with optic neuropathy.

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