Mechanical Injury

Mechanical injury is physical damage caused when an external force deforms, compresses, stretches, or tears biological tissue, making it an important concept in neuroscience and clinical research. In nervous tissue, rapid impact, compression, or rotational forces can disrupt cell membranes, damage axons and blood vessels, and trigger inflammation and secondary degeneration. These effects contribute to traumatic brain injury, spinal cord injury, and peripheral nerve damage, with outcomes ranging from temporary dysfunction to persistent neurological deficits. Studying mechanical injury helps researchers develop experimental models, improve diagnosis and prognosis, and evaluate treatments that limit tissue damage and support neural repair.

Mechanical Injury - Related Videos

Research

JoVE Journal - Developmental Biology

Mechanical Vessel Injury in Zebrafish Embryos

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Cited by 5 •

2015

This article describes a method for creating a mechanical vessel injury in zebrafish embryos. This injury model provides a platform for studying hemostasis, injury-related inflammation, and wound healing in an organism ideally suited for real-time microscopy.

Research

JoVE Journal - Medicine
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The Spared Nerve Injury (SNI) Model of Induced Mechanical Allodynia in Mice

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Cited by 97 •

2011

The Spared Nerve Injury animal model is described here as a mouse model of peripheral neuropathic pain following partial denervation of the sciatic nerve by lesioning the tibial and common peroneal nerve branches, leaving the remaining sural nerve intact. Behavioral modification resulting from mechanical allodynia is quantified by von Frey filaments.

A Simple Neuronal Mechanical Injury Methodology to Study Drosophila Motor Neuron Degeneration

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Cited by 1 •

2017

Here we describe a simple and widely accessible method to injure segmental nerves in Drosophila larvae to visualize and quantify neurodegeneration of motor neurons at the neuromuscular junction (NMJ) of third instar larvae.

A Mouse Model of Single and Repetitive Mild Traumatic Brain Injury

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Cited by 16 •

2017

Athletes absorb several hundred mild traumatic brain injuries (mTBI)/concussions every year; however, the consequence of these on the brain is poorly understood. Therefore, an animal model of single and repetitive mTBI that consistently replicates clinically relevant symptoms provides the means to advance the study of mTBI and concussion.

An Ex Vivo Laser-induced Spinal Cord Injury Model to Assess Mechanisms of Axonal Degeneration in Real-time

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Cited by 9 •

2014

We present a protocol utilizing two-photon excitation time-lapse microscopy to simultaneously visualize the dynamics of axon and myelin injuries in real time. This proposed protocol permits studies of both intrinsic and extrinsic factors which can influence central myelinated axon fate after injury and contribute to permanent clinical disability.

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