Blast Exposure Mice

Blast exposure mice are laboratory animals used to model how blast waves affect the brain and nervous system, providing a controlled approach to studying blast-related traumatic brain injury. In these models, researchers expose mice to a defined pressure wave and then assess changes in neural tissue, behavior, inflammation, and other physiological responses over time. The approach helps link exposure conditions with outcomes such as cognitive or motor deficits and neuropathology. By supporting controlled comparisons across injury severity, timing, and treatment, blast exposure mice contribute to neuroscience research on injury mechanisms, biomarker development, and potential interventions for service members and civilians.

Blast Exposure Mice - Related Videos

Research

JoVE Journal - Neuroscience
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Modeling Highly Repetitive Low-level Blast Exposure in Mice

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Cited by 1 •

2024

Presented here are methods for producing repeated low-intensity blast exposures using mice.

Research

JoVE Journal - Engineering
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Generation of Warfighter Avatars from Weapon Training Scene Images for Blast Exposure Simulations

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Cited by 1 •

2024

A computational framework was developed to automatically reconstruct virtual scenes comprising 3D avatars of soldiers using image and/or video data. The virtual scenes help estimate blast overpressure exposure during weapon training. The tool facilitates a realistic representation of human posture in blast exposure simulations in various scenarios.

Research

JoVE Journal - Engineering

Blast Quantification Using Hopkinson Pressure Bars

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Cited by 2 •

2016

This protocol details the use of Hopkinson pressure bars to measure reflected blast loading from near-field explosive events. It is capable of interpolating a pressure-time history at any point on a reflective boundary and as such can be used to fully characterize the spatial and temporal variations in loading produced.

Evaluating Primary Blast Effects In Vitro

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Cited by 12 •

2017

Understanding how cells are modulated by exposure to shock waves can help identify the mechanisms behind injuries triggered from blast events. This protocol uses custom-built shock tube equipment to apply shock waves at a range of pressures to cell monolayers and to identify the subsequent effects on cell viability.

Induction and Evaluation of Depression in Mice Through Chronic Stress Exposure

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2025

Source: Yan, Z., et al. Evaluating the Anti-depression Effect of Xiaoyaosan on Chronically-stressed Mice. J. Vis. Exp. (2019).The video demonstrates the process of establishing a mouse model of chronic stress-induced depression and assessing depressive behaviors. The chronic application of various stressors triggers the release of corticosterone, leading to neuronal over-excitation and eventual neuronal death, which results in depression-like symptoms in the mice.

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