科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Turkish journal of emergency medicine2026-01-01

Manikin-based noninferiority simulation study of Airgency™: A novel automatic bag valve mask device for emergency respiratory support.

Reza Widianto Sudjud, Jenifer Kiem Aviani

一句话结论 · In one sentence

Airgency™ maintained consistent, precise ventilation with minimal variability and eliminated operator fatigue, supporting its potential as a reliable alternative to manual BVM ventilation in emergency care.

原始摘要(英文原文)· Original abstract
OBJECTIVES: This study evaluated the performance of Airgency™, an automated bag valve mask (BVM) ventilation device developed by Institut Teknologi Bandung and Padjadjaran University, Indonesia, using a manikin-based simulation model. Its performance was compared with conventional hand-squeezed bagvalvemask ventilation performed by medical professionals, with a focus on reducing operator-dependent variability and fatigue. METHODS: A manikin-based simulation was conducted using an adult airway trainer connected to a lung simulator (ASL5000) set to mimic apneic respiratory failure with normal lung mechanics. The Ambu bag, connected to 15 L/min oxygen, was secured to the manikin. Airgency™ operated in normal mode (tidal volume [VT] 400 mL, 15 bpm) for 30 min, repeated 50 times. Seventy-eight anesthesiology residents performed manual BVM ventilation under identical conditions after standardized training. Breathing rate (BR), VT, and peak inspiratory pressure (PIP) were recorded every minute, whereas fatigue was rated using the Visual Analog Scale for Fatigue (VAS-F, 1-10). RESULTS: Airgency™ demonstrated superior ventilation stability. BR remained consistent (14.77 ± 0.08 vs. 16.54 ± 7.05 bpm; P < 0.0001), with much lower variability (coefficient of variation [CV] 0.47% vs. 46.1%-121.2%). VT delivery was steady (397.8 ± 3.1 vs. 406.9 ± 85.4 mL; P < 0.0001; CV 2.2% vs. 13.9%-25.7%), and PIP was more uniform (29.4 ± 0.9 vs. 23.1 ± 8.2 cmH2O; P < 0.00001; CV 2.5% vs. 28.3%-41.1%). Operator fatigue increased progressively during manual ventilation (VAS-F 1.83-5.09; P < 0.0001). CONCLUSION: Airgency™ maintained consistent, precise ventilation with minimal variability and eliminated operator fatigue, supporting its potential as a reliable alternative to manual BVM ventilation in emergency care.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Manikin-based noninferiority simulation study of Airgency™: A novel automatic bag valve mask device for emergency respiratory support. — 科研速览 Science Skim