Neural Injury Model

A neural injury model is an experimental system that reproduces damage to the brain, spinal cord, or peripheral nerves to investigate how nervous tissue responds and repairs itself. Researchers induce or simulate insults such as mechanical trauma, ischemia, toxins, or inflammation, then measure processes including neuronal death, axonal degeneration, glial activation, and regeneration. These models may use cultured cells, organoids, or living organisms and help connect cellular mechanisms with functional outcomes. In biology, neural injury models support studies of neuroprotection, inflammation, rehabilitation, and tissue repair, while providing platforms for evaluating potential treatments and identifying factors that influence recovery.

Neural Injury Model - Related Videos

Research

JoVE EoE - Neuropathology

A Minimal Spinal Cord Injury Model to Study Neural Stem Cell Activation and Migration

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2025

Source: Lakshman, N., et al. A Neurosphere Assay to Evaluate Endogenous Neural Stem Cell Activation in a Mouse Model of Minimal Spinal Cord Injury. J. Vis. Exp. (2018).This video demonstrates the activation and migration of neural stem cells (NSCs) in a mouse spinal cord injury model. To expose the spinal cord, a vertebra from the thoracic region of the spine is removed from an anesthetized mouse. A superficial injury is then created in the white matter of the spinal cord using a bent needle,...

Research

JoVE Journal - Neuroscience
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Lateral Fluid Percussion: Model of Traumatic Brain Injury in Mice

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Cited by 125 •

2011

Lateral fluid percussion (LFP), an established model of traumatic brain injury in mice, is demonstrated. LFP fulfills three major criteria for animal models: validity, reliability and clinical relevance. The procedure, consisting of surgical craniotomy, fixation of hub followed by induction of injury, resulting in focal and diffuse injuries, is described.

Stereotaxic Transplantation of Neural Cell Suspension into a Mouse with Traumatic Brain Injury

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2025

Source: Furmanski, O., et al. Controlled Cortical Impact Model of Mouse Brain Injury with Therapeutic Transplantation of Human Induced Pluripotent Stem Cell-Derived Neural Cells. J. Vis. Exp. (2019)In this video, human-induced pluripotent stem cell-derived neural cells are stereotaxically injected into the gray matter-white matter border of the deep cortex in a mouse model of traumatic brain injury. The transplanted cells integrate into the tissue, promoting functional recovery and circuit...

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.

Research

JoVE Journal - Medicine
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A Neonatal Mouse Spinal Cord Compression Injury Model

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Cited by 4 •

2016

This article describes a method for generating a reproducible spinal cord compression injury (SCI) in the neonatal mouse. The model provides an advantageous platform for studying mechanisms of adaptive plasticity that underlie spontaneous functional recovery.

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