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Performance of the Bebé VieScope Versus Direct Laryngoscopy During Pediatric Cardiopulmonary Resuscitation

A Prospective Randomized Simulation Study

Bibliographic Data

ID15718909
AuthorsPaweł Wieczorek (0000-0002-7159-4040, John Paul II Hospital, corresponding author), Halla Kamińska (0000-0003-0960-8365, Medical University of Silesia), Michał Pruc (0000-0002-2140-9732, John Paul II Catholic University of Lublin), Wojciech Wieczorek (0000-0001-9870-3633, Medical University of Warsaw), Katarzyna Karczewska (Radom College), Jacek Smereka (0000-0002-1427-4796, Wroclaw Medical University), Şahin Çolak (0000-0001-8192-9652, Haydarpaşa Numune Eğitim ve Araştırma Hastanesi), Łukasz Szarpak (0000-0002-0973-5455, Technology Transfer Center, The John Paul II Catholic University of Lublin, 20-708 Lublin, Poland)
Year2026
Volume13
Issue1
Pages137-137
Publication date2026-01-17
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueChildren (JOURNAL)
Journal identifiersISSN: 2227-9067 • E-ISSN: 2227-9067
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/children13010137
PMID41597145
OpenAlexW7124747188
LanguageEN
References cited61

Background/Objectives : Effective airway management during pediatric cardiopulmonary resuscitation (CPR) is crucial but technically challenging, especially during continuous chest compressions. While direct laryngoscopy with Macintosh (MAC) or Miller (MIL) blades remains the standard, optical devices such as the VieScope (VSL) may enhance performance under dynamic resuscitation conditions. This study compared first-pass success and intubation time, as well as procedural difficulty and glottic visualization, of MAC, MIL, and VSL during simulated pediatric cardiopulmonary resuscitation. Methods : This prospective, randomized crossover simulation study involved 53 medical students. Participants performed endotracheal intubation on a high-fidelity manikin simulating a 5-year-old pediatric patient using MAC, MIL, and the Bebé VieScope laryngoscope. Each technique was evaluated in two scenarios: with and without continuous chest compressions. Results : Without chest compressions, first-pass success (FPS) and intubation time varied significantly between techniques. VSL achieved the highest FPS (100%; p = 0.032) and the shortest intubation time (27.9 ± 9.2 s; p = 0.040), performing faster than MIL and achieving higher FPS than MAC. Visualization quality, ease of intubation, and optimization maneuvers were similar across techniques. During continuous chest compressions, all outcomes differed significantly. FPS increased from MAC to MIL and VSL ( p = 0.001), with MAC showing the lowest success rate. VSL showed the shortest intubation time (35.9 ± 13.0 s; p Conclusions : In this simulated pediatric cardiac arrest model, the VieScope laryngoscope demonstrated superior overall performance, especially during uninterrupted chest compressions. Optical tubular laryngoscopy may therefore provide clinically relevant benefits in pediatric resuscitation where maintaining high-quality chest compressions is crucial. Given the manikin-based design of this study, confirmation of these findings in clinical pediatric cardiac arrest settings will require further prospective clinical investigation

Airway · Cardiopulmonary resuscitation · Crossover study · Endotracheal intubation · Intubation · Laryngoscopy · Randomized controlled trial · Airway Management and Intubation Techniques · Cardiac Arrest and Resuscitation · Simulation-Based Education in Healthcare

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