Mouse Neocortex

Mouse neocortex is the layered outer region of the mouse cerebral hemispheres that supports sensory processing, movement, learning, and higher-order behavior, making it a central model for mammalian brain organization. Its six-layered circuitry combines excitatory pyramidal neurons with inhibitory interneurons; sensory signals enter through defined pathways, are transformed by synaptic integration, and generate outputs to cortical and subcortical targets. Researchers use the mouse neocortex to study development, neuronal connectivity, plasticity, and circuit dysfunction, including changes associated with epilepsy, neurodevelopmental disorders, and injury. Its genetic accessibility and experimental tractability also enable links between cellular mechanisms and behavior.

Mouse Neocortex - Related Videos

Research

JoVE Journal - Neuroscience

Large-scale Three-dimensional Imaging of Cellular Organization in the Mouse Neocortex

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Cited by 2 •

2018

Here we describe a procedure for tissue clearing, fluorescent labeling, and large-scale imaging of mouse brain tissue which, thereby, enables visualization of the three-dimensional organization of cell types in the neocortex.

A Method for 2-Photon Imaging of Blood Flow in the Neocortex through a Cranial Window

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Cited by 50 •

2008

Cortical blood flow dynamics can be studied in vivo by imaging fluorescent dextran dyes injected into the tail vein of rodents with 2-photon microscopy. This video shows how to image blood flow dynamics in neocortex of mice through a glass-covered cranial window preparation.

Whole Cell Recording from an Organotypic Slice Preparation of Neocortex

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Cited by 6 •

2011

This is a protocol to prepare and maintain a neocortical slice preparation in organotypic culture for the purpose of making electrical recordings from pyramidal neurons.

In Vivo Targeting of Neural Progenitor Cells in Ferret Neocortex by In Utero Electroporation

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Cited by 5 •

2020

Presented here is a protocol to perform genetic manipulation in the embryonic ferret brain using in utero electroporation. This method allows for targeting of neural progenitor cells in the neocortex in vivo.

Multiphoton Microscopy of Cleared Mouse Brain Expressing YFP

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Cited by 11 •

2012

Multiphoton microscopy of whole mouse organs is possible by optically clearing the organ before imaging, but not all protocols preserve the fluorescent signal of fluorescent proteins. Using an optical clearing method with ethanol-based dehydration and benzyl alcohol:benzyl benzoate clearing, we show high-resolution multiphoton images of whole mouse brain expressing YFP.

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