Neuronal Migration

Neuronal migration is the biological process by which developing neurons move from their birthplace to specific locations, a crucial step in forming functional neural circuits. During development, neurons respond to molecular guidance cues and often travel along processes of radial glial cells, while cytoskeletal proteins coordinate changes in cell shape, adhesion, and movement. Proper migration establishes the layered organization of the brain and positions neurons for synaptic connections. Studying this process helps explain normal nervous system development and disorders caused by misplaced or improperly differentiated neurons, including cortical malformations, epilepsy, and certain neurodevelopmental conditions.

Neuronal Migration - Related Videos

Research

JoVE Journal - Neuroscience

Genetic Manipulation of Cerebellar Granule Neurons In Vitro and In Vivo to Study Neuronal Morphology and Migration

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Cited by 8 •

2014

Neuronal morphogenesis and migration are crucial events underlying proper brain development. Here, we describe methods to genetically manipulate cultured cerebellar granule neurons and the developing cerebellum for the assessment of morphology and migratory characteristics of neurons.

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.

Co-Culturing Glioblastoma Cells on Patterned Neurons: A Technique to Monitor the Migration of Glioblastoma Cells on Rat Hippocampal Neurons In Vitro

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2025

This video describes a co-culture assay of glioblastoma cells on micropatterned neurons, which mimic the myelinated neuronal tracts invasion by the glioblastoma stem-like cells as they migrate on neurons in the peritumoral spaces. This assay can help analyze the effects of pharmacological drugs that inhibit glioblastoma cells' migration on neurons in a glioma.

Time-Lapse Imaging of Cortical Neuron Radial Migration in Transduced Mouse Embryonic Brain Slices

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2025

Source: Wiegreffe, C., et. al., Time-lapse Confocal Imaging of Migrating Neurons in Organotypic Slice Culture of Embryonic Mouse Brain Using In Utero Electroporation. J. Vis. Exp. (2017) This video demonstrates time-lapse confocal microscopy to observe cortical neuron radial migration from the subventricular zone to the cortical plate via radial glial scaffolds in transduced mouse embryonic brain slices.

An Organotypic Slice Assay for High-Resolution Time-Lapse Imaging of Neuronal Migration in the Postnatal Brain

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Cited by 6 •

2010

This protocol describes an organotypic slice assay optimized for the postnatal brain and high-resolution time-lapse imaging of neuroblast migration in the rostral migratory stream.

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