Abstract
OBJECTIVES: To validate a mathematical model using porous media theory for alveolar CO2 determination in ventilated patients. DESIGN: Mathematical modeling study with prospective clinical validation to simulate CO2 exchange from bloodstream to airway entrance. SETTING: ICU. PATIENTS: Thirteen critically ill patients without chronic or acute lung disease. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: Model outcomes compared with patient data showed correlations for end-tidal CO2 (EtCO2), area under the CO2 curve, and PaCO2 of 0.918, 0.954, and 0.995. Determination coefficients (R2) were 0.843, 0.910, and 0.990, indicating precision and predictive power. CONCLUSIONS: The mathematical model shows potential in pulmonary critical care. Although promising, practical application demands further validation, clinician training, and patient-specific adjustments. The path to clinical use will be iterative, involving validation and education.
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Jiménez-Posada, L. D., Palacio- Sánchez, A. F., Montagut-Ferizzola, Y. J., Ardila-Villegas, M., & Maya, J. C. (2024). Validation of Math Model Using Porous Media for Determining Alveolar CO2in Ventilated Patients. Critical Care Medicine, 52(10), e503–e511. https://doi.org/10.1097/CCM.0000000000006350
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