Different fresh gas flows produce similar rebreathing and regional ventilation during helmet continuous positive airway pressure in sedated Beagles

Objective: To evaluate the effects of 4 oxygen driving flows on carbon dioxide rebreathing and ventilation in healthy sedated dogs receiving helmet continuous positive airway pressure (CPAP). Methods: This prospective experimental crossover study included 7 healthy adult Beagles sedated using a standardized protocol. Dogs received helmet CPAP (approx 5 cm H2O) through a Venturi valve system. Following stabilization at 15 L/min, dogs underwent evaluation at 4 oxygen driving flows (5, 10, 15, and 20 L/min), with flow conditions administered in randomized order. Primary outcomes included inspired carbon dioxide (PiCO2), PaCO2, and end-tidal carbon dioxide. Secondary outcomes included oxygenation, hemodynamics, and electrical impedance tomography-derived regional ventilation. Data were analyzed using generalized linear mixed-effects models with flow as a fixed effect and dog as a random effect. Results: Flow significantly affected PiCO2, although the magnitude of the difference was small. Median PiCO2 differed by approximately 1 mm Hg between 5 and 15 L/min, and maximum observed PiCO2 remained low (2 mm Hg). No differences were detected in PaCO2, end-tidal carbon dioxide, respiratory rate, surrogate minute ventilation, or regional ventilation distribution. Arterial oxygen tension differed among flows, but the ratio of arterial oxygen tension to inspired oxygen fraction (P:F ratio) was unchanged. Conclusions: Carbon dioxide rebreathing during helmet CPAP remained minimal across the tested oxygen driving flows and was not associated with measurable changes in PaCO2 or regional ventilation. Clinical Relevance: Lower oxygen driving flows may provide adequate helmet washout in healthy sedated dogs using a Venturi-based helmet CPAP system.

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Publication Details

Journal
American Journal of Veterinary Research
Published
2026-08-27
DOI
https://doi.org/10.2460/ajvr.26.05.0218
Primary Topic
Respiratory Support and Mechanisms
Type
article
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article

Different fresh gas flows produce similar rebreathing and regional ventilation during helmet continuous positive airway pressure in sedated Beagles

Manuel Martin‐Flores, Caterina Vicenti, Andy Adler, Victoria Albano et al.
American Journal of Veterinary Research
Respiratory Support and Mechanisms
article

Different fresh gas flows produce similar rebreathing and regional ventilation during helmet continuous positive airway pressure in sedated Beagles

Manuel Martin‐Flores, Caterina Vicenti, Andy Adler, Victoria Albano, Joaquín Araos, Haider Ali, Rachel Mandelbaum
article en

Abstract

Objective: To evaluate the effects of 4 oxygen driving flows on carbon dioxide rebreathing and ventilation in healthy sedated dogs receiving helmet continuous positive airway pressure (CPAP). Methods: This prospective experimental crossover study included 7 healthy adult Beagles sedated using a standardized protocol. Dogs received helmet CPAP (approx 5 cm H2O) through a Venturi valve system. Following stabilization at 15 L/min, dogs underwent evaluation at 4 oxygen driving flows (5, 10, 15, and 20 L/min), with flow conditions administered in randomized order. Primary outcomes included inspired carbon dioxide (PiCO2), PaCO2, and end-tidal carbon dioxide. Secondary outcomes included oxygenation, hemodynamics, and electrical impedance tomography-derived regional ventilation. Data were analyzed using generalized linear mixed-effects models with flow as a fixed effect and dog as a random effect. Results: Flow significantly affected PiCO2, although the magnitude of the difference was small. Median PiCO2 differed by approximately 1 mm Hg between 5 and 15 L/min, and maximum observed PiCO2 remained low (2 mm Hg). No differences were detected in PaCO2, end-tidal carbon dioxide, respiratory rate, surrogate minute ventilation, or regional ventilation distribution. Arterial oxygen tension differed among flows, but the ratio of arterial oxygen tension to inspired oxygen fraction (P:F ratio) was unchanged. Conclusions: Carbon dioxide rebreathing during helmet CPAP remained minimal across the tested oxygen driving flows and was not associated with measurable changes in PaCO2 or regional ventilation. Clinical Relevance: Lower oxygen driving flows may provide adequate helmet washout in healthy sedated dogs using a Venturi-based helmet CPAP system.

American Journal of Veterinary Research
Cornell University (US), New York State College of Veterinary Medicine (US), Carleton University (CA)
Clean water and sanitation
Openalex Percentile: Top 11%
Respiratory Support and Mechanisms
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