Epifluorescence Stereomicroscopy

Epifluorescence stereomicroscopy is an optical imaging technique that combines three-dimensional, low-magnification stereomicroscopy with fluorescence detection to visualize labeled structures in biological specimens. Light from an excitation source travels through an objective onto the sample, while a dichroic mirror and emission filter separate the resulting fluorescence from the excitation light before it reaches the camera or eyepieces. This approach provides depth perception, natural specimen handling, and selective contrast, making it useful for observing embryos, insects, tissues, cell cultures, and fluorescently tagged proteins. It supports developmental biology, dissection, microinjection, sorting, and real-time analysis of living samples.

Epifluorescence Stereomicroscopy - Related Videos

Research

JoVE EoE - Neuroimaging

In Vivo Imaging of Geniculate Ganglion Neuron Responses Using Epifluorescent Microscopy

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2025

Source: Fowler, B. E., et al. In vivo Calcium Imaging of Mouse Geniculate Ganglion Neuron Responses to Taste Stimuli. J. Vis. Exp. (2021) This video demonstrates a protocol for delivering tastants to the surgically exposed geniculate ganglion in an anesthetized mouse and using GCaMP fluorescence with epifluorescent microscopy to visualize real-time neuronal responses, aiding studies on peripheral taste signal processing.

Research

JoVE Journal - Developmental Biology
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Capturing Tissue Repair in Zebrafish Larvae with Time-lapse Brightfield Stereomicroscopy

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Cited by 27 •

2015

We present a protocol for capturing the dynamics of zebrafish larval tail fin regeneration on a whole-tissue scale using brightfield-based stereomicroscopy. This technique enables capturing the regeneration dynamics with single cell resolution. This methodology can be adapted to any stereomicroscope equipped with a CCD camera and time-lapse software.

Research

JoVE Journal - Biology
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Imaging C. elegans Embryos using an Epifluorescent Microscope and Open Source Software

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Cited by 8 •

2011

The C. elegans embryo is a powerful system for studying cell biology and development. We present a protocol for live imaging of C. elegans embryos utilizing DIC optics or fluorescence using readily available epifluorescent microscopes and open-source software.

Analysis of Cardiac Chamber Development During Mouse Embryogenesis Using Whole Mount Epifluorescence

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Cited by 1 •

2019

We present the protocols to examine mouse heart development using whole mount epifluorescent microscopy on mouse embryos dissected from ventricular specific MLC-2v-tdTomato reporter knock-in mice. This method allows us to directly visualize each stage of the ventricular formation during mouse heart development without labor-intensive histochemical methods.

Long-term Intravital Immunofluorescence Imaging of Tissue Matrix Components with Epifluorescence and Two-photon Microscopy

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Cited by 21 •

2014

The extracellular matrix undergoes substantial remodeling during wound healing, inflammation and tumorigenesis. We present a novel intravital immunofluorescence microscopy approach to visualize the dynamics of fibrillar as well as mesh-like matrix components with high spatial and temporal resolution using epifluorescence or two-photon microscopy.

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