Related Experiment Video
Updated: Jan 28, 2026

A Scalable Model to Study the Effects of Blunt-Force Injury in Adult Zebrafish
Published on: May 31, 2021
Fracture energy threshold in parry injuries due to sharp and blunt force
S Gentile1, B P Kneubuehl2, V Barrera1
1Zurich Institute of Forensic Medicine, Department of Forensic Medicine and Imaging, University of Zurich, Winterthurerstrasse 190/52, CH-8057, Zurich, Switzerland.
Abstract:
Blows with axes, machetes or blunt objects such as baseball bats, truncheons, etc. are often parried, resulting in typical parry injuries, or so-called nightstick fractures to the ulna. In this study, we sought to assess the impact energy required to break the ulna in such parry incidents in an experimental setting using semisynthetic and fully synthetic models. Twenty-seven sheep radii and 33 polyurethane synthetic bones were cast into gelatin prior to being fired at with missiles made of a section of an axe blade or steel rod at different firing velocities using a compressed-nitrogen cannon. Each model was then examined as to the presence of hair-line fractures or complete fractures. Sheep bones and synthetic bones displayed comparable results when struck by the axe missile; here, a clear fracture threshold was evident between 14.00 and 15.26 J. When struck by the rod missile, only the synthetic bones produced significant results, namely a fracture threshold between 20.15 and 23.59 J. In conclusion, our results show an ulnar fracture threshold of approximately 15 J when struck by an axe. The experiments regarding blows with a rod displayed a fracture threshold of around 22 J, but, as this could not be validated with biological bones, this result is questionable.
Related Concept Videos
Work and Energy for Variable Forces
Force and Potential Energy in Three Dimensions
Force and Potential Energy in One Dimension
What is Energy?
Electromotive Force
Energy Basics

