Timely recognition of cardiac arrest (CA) is often delayed because gasping, a frequent sign of CA, is misinterpreted as normal breathing. In a porcine model of untreated CA with frequent gasps, we tested whether transthoracic impedance (TTI), continuously measured through defibrillator pads, could capture gasping-related thoracic volume changes. Gasping-induced inspiratory efforts produced large, distinctive TTI fluctuations. This observation was then confirmed in a healthy human volunteer simulating gasping under open and closed airway conditions. These translational findings support automated, TTI-based gasping detection via automated external defibrillators as a feasible strategy to improve early CA recognition and accelerate bystander CPR initiation.
Detection of Gasping through Transthoracic Impedance: a New Approach to Early Cardiac Arrest Recognition / A. Magliocca, G. Merigo, C. Crivellari, E. Rezoagli, G. Ristagno. - In: RESUSCITATION. - ISSN 0300-9572. - 219:(2026 Feb), pp. 110945.1-110945.2. [10.1016/j.resuscitation.2025.110945]
Detection of Gasping through Transthoracic Impedance: a New Approach to Early Cardiac Arrest Recognition
A. MaglioccaPrimo
;G. MerigoSecondo
;G. Ristagno
Ultimo
2026
Abstract
Timely recognition of cardiac arrest (CA) is often delayed because gasping, a frequent sign of CA, is misinterpreted as normal breathing. In a porcine model of untreated CA with frequent gasps, we tested whether transthoracic impedance (TTI), continuously measured through defibrillator pads, could capture gasping-related thoracic volume changes. Gasping-induced inspiratory efforts produced large, distinctive TTI fluctuations. This observation was then confirmed in a healthy human volunteer simulating gasping under open and closed airway conditions. These translational findings support automated, TTI-based gasping detection via automated external defibrillators as a feasible strategy to improve early CA recognition and accelerate bystander CPR initiation.| File | Dimensione | Formato | |
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