Hindbrain Isolation

Hindbrain isolation is an experimental method in neuroscience that separates the hindbrain from adjacent brain regions to study its structure, development, and function under controlled conditions. Using precise dissection, researchers remove the hindbrain while preserving relevant tissue organization, allowing intrinsic properties and region-specific responses to be examined without direct influence from the forebrain or spinal cord. Isolated hindbrain preparations can support investigations of neural patterning, motor and sensory circuits, neuronal differentiation, and developmental signaling. This approach helps identify local mechanisms that shape hindbrain organization and provides a foundation for studying disorders or therapies involving brainstem-related functions.

Hindbrain Isolation - Related Videos

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JoVE Journal - Neuroscience

Labeling and Imaging Cells in the Zebrafish Hindbrain

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Cited by 7 •

2010

Key to understanding the morphogenetic processes that shape the early embryo is the ability to image cells at high resolution. We describe here a technique for labeling single cells or small clusters of cells in whole zebrafish embryos with membrane-targeted Green Fluorescent Protein.

Research

JoVE Journal - Neuroscience
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Mouse Hindbrain Ex Vivo Culture to Study Facial Branchiomotor Neuron Migration

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Cited by 4 •

2014

Embryonic neurons are born in the ventricular zone of the neural tube, but migrate to reach appropriate targets. Facial branchiomotor (FBM) neurons are a useful model to study neuronal migration. This protocol describes the wholemount ex vivo culture of mouse embryo hindbrains to investigate mechanisms that regulate FBM migration.

Research

JoVE Journal - Neuroscience
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The Mouse Hindbrain As a Model for Studying Embryonic Neurogenesis

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Cited by 2 •

2018

This article demonstrates how the mouse embryonic hindbrain can be used as a model for studying developmental neurogenesis in both whole organ and tissue section preparations.

Electroporation of the Hindbrain to Trace Axonal Trajectories and Synaptic Targets in the Chick Embryo

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Cited by 9 •

2013

How neuronal networks are established in the embryonic brain is a fundamental question in developmental neurobiology. Here we combined an electroporation technique with novel genetic tools, such as Cre/Lox–plasmids and PiggyBac-mediated DNA transposition system in the avian hindbrain to label dorsal interneurons and track their axonal projections and synaptic targets at various developmental stages.

Isolation and Culture of Oculomotor, Trochlear, and Spinal Motor Neurons from a Mouse Embryo

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2025

The video demonstrates the isolation of oculomotor, trochlear, and spinal motor neurons from a transgenic mouse embryo. The embryo expresses motor neurons labeled with a green fluorescent protein (GFP) for easy visualization and identification. The motor neurons are surgically isolated under a fluorescence microscope and maintained in a culture medium.

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