Embryonic Rat Brains

Embryonic rat brains are developing nervous-system tissues collected during prenatal life, when neural circuits, cell types, and regional structures are established. They provide a tractable model for examining how neural progenitor cells proliferate, migrate, and differentiate in response to molecular signals and changing developmental conditions. In biology research, embryonic rat brain tissue supports studies of neurodevelopment, gene and protein function, neuronal culture, developmental disorders, and neurotoxic effects. Its accessibility for dissection and experimental manipulation helps connect cellular mechanisms with brain organization and disease-related outcomes.

Embryonic Rat Brains - Related Videos

Research

JoVE Journal - Neuroscience

Manual Drainage of the Zebrafish Embryonic Brain Ventricles

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Cited by 9 •

2012

We present a method to collect cerebrospinal fluid (CSF) and to create a system which lacks CSF within the embryonic zebrafish brain ventricular system. This allows for further examination of CSF composition and its requirement during embryonic brain development.

Obtaining Cerebellum Slices from an Embryonic Chick Brain

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2025

The video demonstrates the preparation of cerebellum slices. It shows a detailed procedure for isolating the cerebellum from a chick embryo. The slices are then prepared from the dissected cerebellum using a tissue chopper for further experimental analysis.

Organotypic Slice Culture of E18 Rat Brains

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Cited by 15 •

2007

Organotypic slice cultures from embryonic rodent brains are widely used to study brain development. While there are often advantages to an in-vivo system, ...

Stereotaxic Surgery for Excitotoxic Lesion of Specific Brain Areas in the Adult Rat

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Cited by 22 •

2012

Targeted ablation of specific brain region(s) by infusion of an excitotoxin using stereotaxic coordinates is described. This technique could also be adapted for infusion of other chemicals into the rat brain.

Conditional Genetic Transsynaptic Tracing in the Embryonic Mouse Brain

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Cited by 5 •

2014

Capitalizing on a binary genetic strategy we provide a detailed protocol for neural circuit tracing in mice that express complementary transsynaptic tracers after Cre-mediated recombination. Because cell-specific tracer production is genetically encoded, our experimental approach is suitable to study the formation and maturation of neural circuitry during murine embryonic brain development at a single cell resolution.

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