Organ Injury

Organ injury is structural or functional damage to a body organ caused by infection, inflammation, trauma, toxins, ischemia, or other stressors, and it can disrupt whole-body health. In immunology and infection, pathogens or their products activate pattern-recognition receptors, prompting immune cells to release cytokines and other mediators that coordinate defense but may also cause vascular leakage, cell death, and collateral tissue damage. Studying these mechanisms helps researchers distinguish protective immunity from harmful inflammation and identify biomarkers of disease severity. This knowledge supports the development of antimicrobial treatments, immunomodulatory therapies, and strategies to limit persistent damage and promote organ recovery.

Organ Injury - Related Videos

Research

JoVE EoE - Large Animal Models

Bipolar Radiofrequency-Based Hemorrhage Arrest in Solid Organ Injury: A Technique to Arrest Bleeding in Porcine Model With Liver Injury Using Electrosurgery

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2025

This video demonstrates a technique of bipolar radiofrequency energy-based transcollation for hemorrhage arrest in solid organ injury in a porcine model. This method is helpful for the surgical management of traumatic injury by achieving hemostasis by arresting bleeding at the injury site.

Education

JoVE Science Education - Basic Biology

Organ-on-Chip Models

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2026

Introduction to Organ-on-Chip Models Organ-on-chip models are advanced microphysiological systems that recreate key structural and functional features of human organs in a controlled laboratory setting. These devices integrate living human cells within microfluidic channels, allowing researchers to simulate tissue–tissue interfaces, fluid flow, and mechanical forces that are essential for normal organ function. Unlike traditional cell cultures, which often lack these dynamic physiological cues,...

Research

JoVE Journal - Medicine
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Controlled Cervical Laceration Injury in Mice

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Cited by 17 •

2013

A novel technique to create a reproducible in vivo model of cervical spinal cord laceration injury in the mouse is described. This technique is based on spine stabilization by fixation of the cervical facets and laceration of the spinal cord using an oscillating blade with an accuracy of ±0.01 mm.

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.

Training Persons with Spinal Cord Injury to Ambulate Using a Powered Exoskeleton

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Cited by 58 •

2016

Training a person with paralysis to ambulate using a powered exoskeleton may present challenges. The goals are to present the candidate selection criteria and the training procedures for exoskeletal-assisted walking and other mobility skills that can be progressed as the participant's skill level improves.

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