Stroke Tissue Damage

Stroke tissue damage is the injury to brain cells and neural networks caused by interrupted blood flow or bleeding within the brain. In ischemic stroke, an arterial blockage reduces oxygen and glucose delivery, triggering energy failure, excitotoxic signaling, inflammation, and cell death; hemorrhagic stroke additionally causes mechanical disruption and pressure from pooled blood. The location and extent of damage influence movement, sensation, language, cognition, and other neurological functions, while surrounding tissue may remain vulnerable but potentially recoverable. Studying these mechanisms supports brain imaging, diagnosis, neuroprotective strategies, rehabilitation, and the development of treatments that limit secondary injury and improve recovery.

Stroke Tissue Damage - Related Videos

Research

JoVE Journal - Genetics

Use of Frozen Tissue in the Comet Assay for the Evaluation of DNA Damage

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Cited by 8 •

2020

This protocol describes several procedures for preparing high quality frozen tissue samples at the time of necropsy for use in the comet assay to assess DNA damage: 1) minced tissue, 2) scraped epithelial cells from the gastrointestinal tract, and 3) cubed tissue samples, requiring homogenization using a tissue mincing device.

Stereotactic Injection of Hydrogel into a Post-Stroke Mouse Model

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2025

Source: Wilson, K.L., et al. Injection of Hydrogel Biomaterial Scaffolds to The Brain After Stroke. J. Vis. Exp. (2020)This video demonstrates the stereotaxic injection of a hydrogel into the stroke core of a post-stroke mouse, highlighting its role in scaffold formation that mimics the extracellular matrix, promotes cellular infiltration, and supports angiogenesis, underscoring its neurotherapeutic potential in stroke recovery.

Research

JoVE Journal - Medicine
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Modeling Stroke in Mice: Permanent Coagulation of the Distal Middle Cerebral Artery

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Cited by 104 •

2014

Various murine models of middle cerebral artery occlusion (MCAO) are widely used in experimental brain research. Here, we demonstrate the model of transcranial permanent distal MCAO which produces consistent cortical infarction of a size corresponding to damage imposed by the majority of human ischemic strokes.

Assessing the Angiogenesis Effects of a Test Drug in a Rat Model of Ischemic Stroke

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2025

Begin with a rat subjected to middle cerebral artery occlusion, a surgical procedure that temporarily blocks blood flow to the brain tissue.This induces an ischemic stroke, leading to brain tissue damage.Next, remove the blockage to restore blood flow.Select rats that exhibit neurological deficits to ensure study relevance.Then, administer the test drug to the experimental group while injecting saline into the other group.Repeat the drug and saline administration.The test drug promotes...

Exertional Heat Stroke Mouse Model: A Protocol to Study Mechanisms Underlying Exertional Heat Stroke

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2025

In this video we describe a step-by-step protocol to study exertional heat stroke (EHS) in a mouse model.

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