Head Impact Simulation

Head impact simulation is a computational method for modeling how the head and brain respond to forces during events such as collisions, falls, or sports impacts. Bioengineers use anatomical models and finite element analysis to apply measured or estimated loading conditions, representing tissue properties and calculating changes in motion, stress, strain, and pressure. These simulations help relate impact mechanics to potential injury patterns, including concussion and traumatic brain injury. They also support helmet evaluation, vehicle safety design, injury prevention, and the development of experimental protocols, while reducing reliance on physical testing and improving understanding of brain biomechanics.

Head Impact Simulation - Related Videos

Research

JoVE Journal - Bioengineering

A Test Bed to Examine Helmet Fit and Retention and Biomechanical Measures of Head and Neck Injury in Simulated Impact

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Cited by 8 •

2017

Using an anthropometric head and neck, optical fiber-based fit force transducers, an array of head acceleration and neck force/moment transducers, and a dual high speed camera system, we present a test bed to study helmet retention and effects on biomechanical measures of head and neck injury secondary to head impact.

Simulating Impacts of Ice Storms on Forest Ecosystems

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Cited by 6 •

2020

Ice storms are important weather events that are challenging to study because of difficulties in predicting their occurrence. Here, we describe a novel method for simulating ice storms that involves spraying water over a forest canopy during sub-freezing conditions.

An Investigation of the Effects of Sports-related Concussion in Youth Using Functional Magnetic Resonance Imaging and the Head Impact Telemetry System

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Cited by 5 •

2011

This article provides an overview of a multi-modal approach to mild traumatic brain injury diagnosis and recovery in youth. This approach combines neuropsychological testing with functional magnetic resonance imaging and the Head Impact Telemetry System to monitor the relationship between head impacts and brain activity during cognitive testing.

In Vivo Protocol of Controlled Subconcussive Head Impacts for the Validation of Field Study Data

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Cited by 24 •

2019

The subconcussive soccer heading model is a safe and concise methodological approach to isolate and measure the effects of subconcussive head impacts.

A Repetitive Concussive Head Injury Model in Mice

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Cited by 5 •

2016

Concussion presents the most common type of traumatic brain injury. Therefore, a repetitive concussive animal model, which replicates the important features of an injury in patients, may provide a means to study concussion in a rigorous, controlled, and efficient manner.

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