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Journal Article

Ranking and Rating Bicycle Helmet Safety Performance in Oblique Impacts Using Eight Different Brain Injury Models

Madelen Fahlstedt; Fady Abayazid; Matthew B. Panzer; Antonia Trotta; Wei Zhao; Mazdak Ghajari; Michael D. Gilchrist; Songbai Ji; Svein Kleiven; Xiaogai Li; Aisling Ní Annaidh; Peter Halldin
Annals of Biomedical Engineering · Vol. 49, Issue 3 · pp. 1097-1109 · 2021

Abstract

Bicycle helmets are shown to offer protection against head injuries. Rating methods and test standards are used to evaluate different helmet designs and safety performance. Both strain-based injury criteria obtained from finite element brain injury models and metrics derived from global kinematic responses can be used to evaluate helmet safety performance. Little is known about how different injury models or injury metrics would rank and rate different helmets. The objective of this study was to determine how eight brain models and eight metrics based on global kinematics rank and rate a large number of bicycle helmets (n=17) subjected to oblique impacts. The results showed that the ranking and rating are influenced by the choice of model and metric. Kendall’s tau varied between 0.50 and 0.95 when the ranking was based on maximum principal strain from brain models. One specific helmet was rated as 2-star when using one brain model but as 4-star by another model. This could cause confusion for consumers rather than inform them of the relative safety performance of a helmet. Therefore, we suggest that the biomechanics community should create a norm or recommendation for future ranking and rating methods.

Bibliographic Information

JournalAnnals of Biomedical Engineering
PublisherSpringer
Publication Date2021-03-01
Publication Year2021
Volume49
Issue3
Pages1097-1109
Document TypeJournal Article
Print ISSN0090-6964
eISSN1573-9686
DOI10.1007/s10439-020-02703-w

Access Information

NARA Access Coverage1972-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10439
Publisher PageOpen Publisher Page
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