Neural Coaptation Technique

Neural coaptation is a microsurgical technique that reconnects the ends of a severed or damaged nerve to restore continuity and support functional recovery. Surgeons carefully align the nerve ends, often using magnification and fine sutures or other adjuncts, while minimizing tension and preserving accurate fascicular orientation so regenerating axons can cross the repair site. In medicine, neural coaptation is used during peripheral nerve repair after trauma, tumor removal, or reconstructive procedures. Proper alignment can promote axonal regeneration and reinnervation of target muscles or sensory regions, while research continues to improve repair materials, precision, and long-term functional outcomes.

Neural Coaptation Technique - Related Videos

Research

JoVE Journal - Medicine

Taking the Next Step: a Neural Coaptation Orthotopic Hind Limb Transplant Model to Maximize Functional Recovery in Rat

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Cited by 2 •

2020

This protocol presents a robust, reproducible model of vascularized composite allotransplant (VCA) geared toward simultaneous study of immunology and functional recovery. The time invested in meticulous technique in a right mid-thigh hind limb orthotopic transplant with hand sewn vascular anastomoses and neural coaptation yields the ability to study functional recovery.

A Co-culture Technique for Differentiating Human Neural Progenitor Cells into Neurons

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2025

This video demonstrates a method to differentiate human neural progenitor cells (NPCs) into neurons. The NPCs are introduced onto an established mouse astrocyte-rat cortical neuron co-culture, promoting NPC differentiation into neurons. The differentiation is confirmed by visualizing the cells under a confocal microscope.

A Technique for Generating Neural Progenitor Cells from Mouse Embryonic Stem Cells

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2025

This video demonstrates a method for the in vitro generation of neural progenitor cells (NPCs) from mouse embryonic stem cells (mESCs). The mESCs are cultured in suspension to form embryoid bodies (EBs), which are then guided to differentiate into NPCs via retinoic acid treatment in an adherent culture.

Research

JoVE Journal - Neuroscience
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Enumeration of Neural Stem Cells Using Clonal Assays

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Cited by 5 •

2016

Neural stem cells (NSCs) refer to cells which can self-renew and differentiate into the three neural lineages. Here, we describe a protocol to determine NSC frequency in a given cell population using neurosphere formation and differentiation under clonal conditions.

Neural Activity Propagation in an Unfolded Hippocampal Preparation with a Penetrating Micro-electrode Array

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Cited by 2 •

2015

We have developed an in vitro unfolded hippocampus which preserves CA1-CA3 array of neurons. Combined with the penetrating micro-electrode array, neural activity can be monitored in both the longitudinal and transverse orientations. This method provides advantages over hippocampal slice preparations as the propagation in the entire hippocampus can be recorded simultaneously.

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