Mouse Nmj Analysis

Mouse neuromuscular junction (NMJ) analysis is the study of synaptic structure and function where motor neurons communicate with skeletal muscle, providing a model for understanding peripheral nerve and muscle disorders. Typically, researchers label presynaptic axon terminals and postsynaptic acetylcholine receptors with fluorescent markers, then use microscopy to assess junctional morphology, size, occupancy, fragmentation, and nerve–muscle alignment. These measurements reveal how aging, injury, genetic mutations, or neurodegenerative disease alter synaptic maintenance and transmission. Mouse NMJ analysis therefore supports investigations of neuromuscular development, synaptic remodeling, disease mechanisms, and the effectiveness of potential therapeutic interventions.

Mouse Nmj Analysis - Related Videos

Research

JoVE Journal - Biology

Drosophila Larval NMJ Dissection

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Cited by 115 •

2009

This protocol demonstrates how to dissect Drosophila larvae in preparation for immunohistochemistry and/or imaging of the neuromuscular junction.

Drosophila Neuromuscular Junction (NMJ) Quantification: A Method to Assess Synaptic Morphology and Function

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2023

The Drosophila neuromuscular junction (NMJ) is used as a model to study the morphology and function of synapses. This video describes important features that researchers quantify to characterize the NMJ. The example protocol demonstrates a software able to perform the quantification automatically.

Electrophysiological Methods for Recording Synaptic Potentials from the NMJ of Drosophila Larvae

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Cited by 29 •

2009

Here we describe electrophysiological methods for measuring synaptic transmission at the neuromuscular junction of Drosophila larva. Evoked release is initiated artificially by stimulating the motor neuron axons, and transmission through the NMJ can be measured by the postsynaptic response evoked in the muscle.

Research

JoVE Journal - Biology
Free Sample

Historical View and Physiology Demonstration at the NMJ of the Crayfish Opener Muscle

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Cited by 33 •

2009

The opener muscle of the crayfish leg is presented for its historical importance and experimental versatility in muscle phenotype, synaptic physiology and plasticity.

Drosophila Larval NMJ Immunohistochemistry

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Cited by 26 •

2009

This protocol demonstrates how to perform immunohistochemistry on dissected Drosophila larva.

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