Zebrafish Retinal Imaging

Zebrafish retinal imaging is a set of microscopy techniques used to visualize retinal structure, cell behavior, and neural activity in the developing or mature zebrafish eye. Because zebrafish larvae are small and optically transparent, researchers can combine fluorescent markers with confocal or light-sheet microscopy to capture retinal cells in living animals over time, often with cellular resolution. These approaches help investigate retinal development, photoreceptor organization, neuronal connectivity, and responses to injury or treatment. By enabling longitudinal observation in an intact vertebrate model, zebrafish retinal imaging supports studies of visual biology, retinal disease mechanisms, regeneration, and candidate therapies.

Zebrafish Retinal Imaging - Related Videos

Research

JoVE EoE - Neuroimaging

Live Cell Imaging of Muller Glial Nuclear Migration During Zebrafish Retinal Regeneration

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2025

Source: Lahne, M., et.al. Culture of Adult Transgenic Zebrafish Retinal Explants for Live-cell Imaging by Multiphoton Microscopy. J. Vis. Exp. (2017)This video demonstrates live-cell imaging of Muller glial nuclear migration in agarose-embedded zebrafish retinal explants following light-induced photoreceptor damage. Tumor necrosis factor-alpha (TNF-α) released by damaged photoreceptors activates Muller glial cells, triggering nuclear migration through the inner and outer nuclear layers for...

Culture of Adult Transgenic Zebrafish Retinal Explants for Live-cell Imaging by Multiphoton Microscopy

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Cited by 6 •

2017

Zebrafish retinal regeneration has mostly been studied using fixed retinas. However, dynamic processes such as interkinetic nuclear migration occur during the regenerative response and require live-cell imaging to investigate the underlying mechanisms. Here, we describe culture and imaging conditions to monitor Interkinetic Nuclear Migration (INM) in real-time using multiphoton microscopy.

Transplantation of GFP-expressing Blastomeres for Live Imaging of Retinal and Brain Development in Chimeric Zebrafish Embryos

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Cited by 4 •

2010

We demonstrate a protocol to generate chimeric zebrafish embryos for live imaging cellular behavior during embryogenesis.

Generation of Primary Retinal Ganglion Cell Cultures From Zebrafish Embryos

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2025

The video demonstrates a method for culturing primary retinal ganglion cells from zebrafish embryos. Early-stage embryos undergo dissection to isolate the eyes, which are subsequently mechanically dissociated into a suspension of retinal ganglion cells. This cell suspension is cultured on coverslips coated with adhesive proteins to facilitate axon development.

Modeling Retinal Degeneration and Regeneration in Zebrafish Using a Focal Laser Injury

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2025

This video demonstrates a procedure to induce retinal degeneration in adult zebrafish using laser injury. The laser targets photoreceptor cells in the retina, triggering cell death and a degenerative process. This damage activates Müller glia (MG) cells, leading to their dedifferentiation into stem cell progenitors that aid in retinal regeneration.

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