Brain Slice Imaging

Brain slice imaging is an ex vivo microscopy approach that visualizes cells, circuits, and tissue structure in thin sections of brain maintained under controlled laboratory conditions. Researchers typically prepare acute or organotypic slices, preserve them in oxygenated artificial cerebrospinal fluid, and use transmitted light or fluorescent reporters to track morphology, calcium signals, or other activity-dependent changes over time. This method provides access to neuronal and glial processes while retaining local circuit organization, allowing investigators to examine synaptic transmission, connectivity, disease-related changes, and responses to drugs or stimulation. Its controlled setting links cellular mechanisms to circuit function and supports neuroscience research when intact-animal imaging is limited.

Brain Slice Imaging - Related Videos

Research

JoVE Journal - Neuroscience

A Rapid Approach to High-Resolution Fluorescence Imaging in Semi-Thick Brain Slices

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Cited by 10 •

2011

Here we describe a rapid and simple method to image fluorescently labeled cells in semi-thick brain slices. By fixing, slicing, and optically clearing brain tissue we describe how standard epifluorescent or confocal imaging can be used to visualize individual cells and neuronal networks within intact nervous tissue.

Bioluminescence Imaging to Assess Tumor Growth in an Organotypic Mouse Brain Slice

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2025

Source: Ciraku, L., et. al. An Ex Vivo Brain Slice Model to Study and Target Breast Cancer Brain Metastatic Tumor Growth. J. Vis. Exp. (2021).This video demonstrates the imaging of luciferase-expressing tumor cells in an organotypic mouse brain slice. Luciferin is added to the medium, and the plate is placed inside the chamber of the in vivo imaging system. Parameters for image capture are adjusted, and the tumor's shape and size are defined. The bioluminescent signals emitted by the tumor...

Imaging Calcium Responses in GFP-tagged Neurons of Hypothalamic Mouse Brain Slices

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Cited by 5 •

2012

In this protocol, we update recent progress in imaging Ca2+ signals of GFP-tagged neurons in brain tissue slices using a red fluorescent Ca2+ indicator dye.

Ex Vivo Optogenetic Dissection of Fear Circuits in Brain Slices

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Cited by 8 •

2016

Optogenetic approaches are widely used to manipulate neural activity and assess the consequences for brain function. Here, a technique is outlined that upon in vivo expression of the optical activator Channelrhodopsin, allows for ex vivo analysis of synaptic properties of specific long range and local neural connections in fear-related circuits.

Confocal Imaging of Mitochondrial Movement within Oligodendrocytes in Organotypic Brain Slice Cultures

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2025

Source: Kennedy, L. H., et. al. Visualization and Live Imaging of Oligodendrocyte Organelles in Organotypic Brain Slices Using Adeno-associated Virus and Confocal Microscopy. J. Vis. Exp. (2017)This video demonstrates the imaging of oligodendrocyte mitochondria in organotypic mouse brain slices. The slice is placed inside a bath chamber with continuous fluid circulation and controlled temperature. After setting up various parameters of the confocal microscope, time-lapse images of mitochondria...

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