Related Experiment Video
Updated: Mar 15, 2026

Author Spotlight: Developing Precise and Clinically Relevant Models for Studying Secondary Degeneration in Traumatic Optic Neuropathy
Published on: November 29, 2024
Bridging the Gap of Standardized Animals Models for Blast Neurotrauma: Methodology for Appropriate Experimental
Pamela J VandeVord1, Alessandra Dal Cengio Leonardi2, David Ritzel3
1Biomedical Engineering and Mechanics, Virginia Tech, 447 Kelly Hall, 325 Stanger St., Blacksburg, VA, 24061, USA. pvord@vt.edu.
Abstract:
Recent military combat has heightened awareness to the complexity of blast-related traumatic brain injuries (bTBI). Experiments using animal, cadaver, or biofidelic physical models remain the primary measures to investigate injury biomechanics as well as validate computational simulations, medical diagnostics and therapies, or protection technologies. However, blast injury research has seen a range of irregular and inconsistent experimental methods for simulating blast insults generating results which may be misleading, cannot be cross-correlated between laboratories, or referenced to any standard for exposure. Both the US Army Medical Research and Materiel Command and the National Institutes of Health have noted that there is a lack of standardized preclinical models of TBI. It is recommended that the blast injury research community converge on a consistent set of experimental procedures and reporting of blast test conditions. This chapter describes the blast conditions which can be recreated within a laboratory setting and methodology for testing in vivo models within the appropriate environment.

