Postnatal Mice

Postnatal mice are laboratory mice studied after birth to examine how the nervous system develops, adapts, and responds to environmental influences. During this period, neural circuits undergo processes such as synapse formation, neuronal maturation, myelination, and activity-dependent refinement, making age a critical experimental variable. In neuroscience, postnatal mouse models help researchers investigate brain development, sensory processing, learning, neurodevelopmental disorders, and responses to injury or treatment. Carefully defined postnatal ages also support comparisons across experiments and clarify how molecular, cellular, and behavioral changes emerge over time.

Postnatal Mice - Related Videos

Research

JoVE Journal - Biology
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Dissection of the Auditory Bulla in Postnatal Mice: Isolation of the Middle Ear Bones and Histological Analysis

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Cited by 13 •

2017

We present a protocol to isolate the auditory bulla, capsule, and ossicles from postnatal mice for whole mount and histological analysis.

Research

JoVE Journal - Neuroscience

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.

Research

JoVE Journal - Genetics
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Systemic Treatment for Postnatal, Juvenile, and Runted Adult Mice by Retrobulbar Sinus Injection

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2024

This article provides a protocol and an accompanying video for the retrobulbar sinus injection of up to a total volume of 150 µL for postnatal, juvenile, and runted adult mice. This procedure is particularly well suited for the injection of small mice (15 g) when tail vein injection is not feasible.

Visualization of Cell Cycle Variations and Determination of Nucleation in Postnatal Cardiomyocytes

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Cited by 5 •

2017

To distinguish cell division from cell cycle variations in cardiomyocytes, we present protocols using two transgenic mouse lines: Myh6-H2B-mCh transgenic mice, for the unequivocal identification of cardiomyocyte nuclei, and CAG-eGFP-anillin mice, for distinguishing cell division from cell cycle variations.

Imaging Cleared Embryonic and Postnatal Hearts at Single-cell Resolution

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Cited by 8 •

2016

We describe a protocol to volumetrically image fluorescent protein labeled cells deep inside intact embryonic and postnatal hearts. Utilizing tissue-clearing methods in combination with whole mount staining, single fluorescent protein-labeled cells inside an embryonic or postnatal heart can be imaged clearly and accurately.

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