» Articles » PMID: 15777159

The State of Head Injury Biomechanics: Past, Present, and Future Part 2: Physical Experimentation

Overview
Publisher Begell House
Date 2005 Mar 22
PMID 15777159
Citations 7
Authors
Affiliations
Soon will be listed here.
Abstract

This presentation is the continuation of the article published in Critical Reviews of Biomedical Engineering, 29(5-6), 2001. That issue contained topics dealing with components and geometry of the human head, classification of head injuries, some early experimental studies, and tolerance considerations. It then dealt with head motion and load characterization, investigations during the period from 1939 to 1966, injury causation and early modeling efforts, the 1966 Head Injury Conference and its sequels, mechanical properties of solid tissues, fluid characterization, and early investigation of the mechanical properties of cranial materials. It continued with a description of the systematic investigations of solid cranial components and structural properties since 1966, fetal cranial properties, analytical head modeling, and numerical solutions of head injury. The paper concluded with experimental dynamic loading of human living and cadaver heads, dynamic loading of surrogate heads, and head injury mechanics. This portion of the paper describes physical head injury experimentation involving animals, primarily primates, human cadavers, volunteers, and inanimate physical models. In order to address the entire domain of head injury biomechanics in the two-part survey, it was intended that this information be supplemented by discussions of head injury tolerance and criteria, automotive and sports safety considerations, and the design of protective equipment, but Professor Goldsmith passed away before these sections could be completed. It is nevertheless anticipated that this attenuated installment will provide, in conjunction with the first part of the survey, a valuable resource for students and practitioners of head injury biomechanics.

Citing Articles

Design Considerations for the Attenuation of Translational and Rotational Accelerations in American Football Helmets.

McIver K, Lee P, Bucherl S, Talavage T, Myer G, Nauman E J Biomech Eng. 2023; 145(6).

PMID: 36628996 PMC: 10782865. DOI: 10.1115/1.4056653.


Structural, Functional, and Metabolic Brain Markers Differentiate Collision versus Contact and Non-Contact Athletes.

Churchill N, Hutchison M, Di Battista A, Graham S, Schweizer T Front Neurol. 2017; 8:390.

PMID: 28878729 PMC: 5572295. DOI: 10.3389/fneur.2017.00390.


A QCT-Based Nonsegmentation Finite Element Head Model for Studying Traumatic Brain Injury.

Liang Z, Luo Y Appl Bionics Biomech. 2016; 2015:837585.

PMID: 27019594 PMC: 4745440. DOI: 10.1155/2015/837585.


Angular Impact Mitigation system for bicycle helmets to reduce head acceleration and risk of traumatic brain injury.

Hansen K, Dau N, Feist F, Deck C, Willinger R, Madey S Accid Anal Prev. 2013; 59:109-17.

PMID: 23770518 PMC: 3769450. DOI: 10.1016/j.aap.2013.05.019.


Functionally-detected cognitive impairment in high school football players without clinically-diagnosed concussion.

Talavage T, Nauman E, Breedlove E, Yoruk U, Dye A, Morigaki K J Neurotrauma. 2010; 31(4):327-38.

PMID: 20883154 PMC: 3922228. DOI: 10.1089/neu.2010.1512.