Defining the medical coverage of ballistic protection to the pelvis and thigh.


Journal

BMJ military health
ISSN: 2633-3775
Titre abrégé: BMJ Mil Health
Pays: England
ID NLM: 101761581

Informations de publication

Date de publication:
Jun 2020
Historique:
received: 19 07 2019
revised: 11 08 2019
accepted: 13 08 2019
pubmed: 1 3 2020
medline: 30 1 2021
entrez: 1 3 2020
Statut: ppublish

Résumé

Pelvis, lower limb and associated genital injury caused by explosive devices was responsible for mortality and considerable long-term morbidity for the UK Armed Forces during combat operations in Afghanistan, resulting in the issue of a pelvic protection system in 2010. The aim of this current research was to determine the medical coverage of the pelvis and thigh and to define the vertical dimensions of ballistic protective material for future pelvic protection (PP). CT scans from 120 male UK Armed Forces personnel were analysed to identify the anthropometric landmarks and vertical boundaries of coverage for the pelvis and thigh. Pelvic height was the vertical distance between the upper border of the iliac crest in the midaxillary plane to the most inferior point of the ischial tuberosity of the pelvis. Upper thigh height was proposed as a 100 mm fixed distance below the ischial tuberosities, enabling a tourniquet to be reproducibly applied. These distances were compared with the ballistic component of the five sizes of tier 1 PP using a paired t-test. The vertical components of coverage measured using CT scans were all significantly less (p<0.01) compared with all five sizes of tier 1 PP; for example, the ballistic component of the smallest size of tier 1 PP measured 410 mm, which was larger than the 99th percentile male, which measured 346 mm on CT scans. While all sizes of tier 1 PP provide coverage to the pelvis and upper thigh structures, there is an opportunity to optimise future PP. For example, comparing the large size of tier 1 PP to the 50th percentile male demonstrated an opportunity to reduce the ballistic protective component by 31%. Reducing the quantity of material used will improve heat dissipation and user comfort and reduce material mass and acquisition costs.

Identifiants

pubmed: 32111679
pii: jramc-2019-001291
doi: 10.1136/jramc-2019-001291
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

129-134

Informations de copyright

© Author(s) (or their employer(s)) 2020. No commercial re-use. See rights and permissions. Published by BMJ.

Déclaration de conflit d'intérêts

Competing interests: None declared.

Auteurs

Eluned Lewis (E)

Defence Ordnance and Safety Group (DOSG), Defence Equipment and Support (DE&S), Abbey Wood, Bristol, UK eluned.lewis759@mod.gov.uk.

R N Fryer (RN)

Platform Systems Division, Defence Science and Technology Laboratory (DSTL), Portsdown West, Fareham, UK.

J Breeze (J)

Royal Centre for Defence Medicine (RCDM), Birmingham Research Park, Birmingham, UK.
Department of Maxillofacial Surgery, Queen Elizabeth Hospital Birmingham, Birmingham, UK.

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