Motor Nerve Regeneration

Motor nerve regeneration is the biological process through which injured motor nerves restore axon connections with skeletal muscles, helping recover movement and function. After peripheral nerve injury, the damaged axon and myelin break down in a process called Wallerian degeneration, while Schwann cells clear debris, form regenerative pathways, and release signals that support axonal growth; regenerating axons must then reach and reinnervate their target muscles. Research in biology examines how injury location, regeneration rate, cellular signaling, and the condition of the nerve environment influence recovery. These mechanisms guide nerve repair strategies, rehabilitation, and the development of biomaterials or therapies for motor deficits.

Motor Nerve Regeneration - Related Videos

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JoVE EoE - Neurotherapeutics

Axonal Regeneration in the Sciatic Nerve of a Mouse Following a Crush Injury

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2025

Source: Li, Q., et al. Investigating Mammalian Axon Regeneration: In Vivo Electroporation of Adult Mouse Dorsal Root Ganglion. J. Vis. Exp. (2018)This video demonstrates the process of axonal regeneration in a mouse sciatic nerve following a crush injury. The isolated nerve is fixed and prepared for imaging, with fluorescent proteins expressed in neurons to visualize axon growth. Using an epifluorescence microscope, axon regeneration is traced from the injury site to assess the extent of...

Inducing Fibular Nerve Injury in a Mouse to Study Neuromuscular Junction Regeneration

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2025

Source: Dalkin, W., et al. The Fibular Nerve Injury Method: A Reliable Assay to Identify and Test Factors That Repair Neuromuscular Junctions. J. Vis. Exp. (2016)This video demonstrates a surgical procedure to induce fibular nerve injury in a mouse to study neuromuscular junction (NMJ) regeneration. The procedure involves exposing the fibular nerve, applying controlled pressure to induce injury, and ensuring the epineurium remains intact to support axonal regeneration. Over time, macrophages...

Motor Nerve Transection and Time-lapse Imaging of Glial Cell Behaviors in Live Zebrafish

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Cited by 14 •

2013

Although the peripheral nervous system (PNS) is capable of significant repair after injury, little is known about the cellular and molecular mechanisms that govern this phenomenon. Using live, transgenic zebrafish and a reproducible nerve transection assay, we can study dynamic glial cell behaviors during nerve degeneration and regeneration.

Neurotrophin 4 Infusion for Laryngeal Nerve Regeneration in an Aged Rat

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2025

Source: Andreatta, R. D. et. al., Subcutaneous Neurotrophin 4 Infusion Using Osmotic Pumps or Direct Muscular Injection Enhances Aging Rat Laryngeal Muscles. J. Vis. Exp. (2017)This video demonstrates neurotrophin 4 (NTF4) infusion in an aged rat model to restore laryngeal muscle function affected by aging-related denervation and reduced neuromuscular junctions. NTF4 triggers nerve regeneration and promotes neuromuscular junction formation, highlighting its therapeutic potential for laryngeal...

Effects of Ethanol-Induced Sympathetic Ganglion Block on Nerve Regeneration in a Canine Model

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2025

Source: Shionoya, Y., et al. Ethanol-Induced Cervical Sympathetic Ganglion Block Applications for Promoting Canine Inferior Alveolar Nerve Regeneration Using an Artificial Nerve. J. Vis. Exp. (2018)This video demonstrates a canine model for inferior alveolar nerve (IAN) regeneration using a biodegradable scaffold and ethanol-induced sympathetic blockade. The procedure involves surgically accessing the cervical sympathetic ganglion and injecting ethanol to induce vasodilation. The resulting...

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