Effectiveness of Body Armor Against Shock Waves: Preventing Blast Injury in a Confined Space

Introduction Blast injuries in modern society often occur owing to terrorist attacks in confined spaces, particularly in urban settings, indoors, and in vehicles, leading to significant damage. Therefore, it is important to focus on blast injuries in confined spaces rather than in conventional open-...

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Veröffentlicht in:Curēus (Palo Alto, CA) CA), 2024-04, Vol.16 (4), p.e57568-e57568
Hauptverfasser: Kiriu, Nobuaki, Saitoh, Daizoh, Sekine, Yasumasa, Yamamura, Koji, Fujita, Masanori, Mizukaki, Toshiharu, Tomura, Satoshi, Kiyozumi, Tetsuro
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Sprache:eng
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Zusammenfassung:Introduction Blast injuries in modern society often occur owing to terrorist attacks in confined spaces, particularly in urban settings, indoors, and in vehicles, leading to significant damage. Therefore, it is important to focus on blast injuries in confined spaces rather than in conventional open-field experiments. Materials and methods We used an air-driven shock wave generator (blast tube) established indoors in 2017 and conducted basic research to potentially save the lives of patients with blast injuries. Under general anesthesia, pigs were divided into with body armor (BA) and without BA groups. The pigs were fixed in the measurement chamber with their dorsal chest directly exposed to the shock wave. The driving pressure was set at 3.0 MPa to achieve a mortality rate of approximately 50%. A generated shock wave was directly applied to the pigs. Comparisons were made between the groups with respect to cardiac arrest and survival, as well as apnea, bradycardia, and hypotension, which are the triad of blast lung. Autopsies were performed to confirm the extent of the organ damage. Statistical analysis was performed using Fisher's exact test, and statistical significance was set at
ISSN:2168-8184
2168-8184
DOI:10.7759/cureus.57568