Title :
A comprehensive cardiopulmonary simulation model for the analysis of hypercapnic respiratory failure
Author :
Chbat, Nicolas W. ; Giannessi, Massimo ; Albanese, Antonio ; Ursino, Mauro
Author_Institution :
Philips Res. North America, Briarcliff Manor, NY, USA
Abstract :
We developed a new comprehensive cardiopulmonary model that takes into account the mutual interactions between the cardiovascular and the respiratory systems along with their short-term regulatory mechanisms. The model includes the heart, systemic and pulmonary circulations, lung mechanics, gas exchange and transport equations, and cardio-ventilatory control. Results show good agreement with published patient data in case of normoxic and hyperoxic hypercapnia simulations. In particular, simulations predict a moderate increase in mean systemic arterial pressure and heart rate, with almost no change in cardiac output, paralleled by a relevant increase in minute ventilation, tidal volume and respiratory rate. The model can represent a valid tool for clinical practice and medical research, providing an alternative way to experience-based clinical decisions.
Keywords :
biocontrol; cardiovascular system; haemodynamics; lung; physiological models; pneumodynamics; cardiopulmonary simulation model; cardioventilatory control; gas exchange; heart; heart rate; hypercapnic respiratory failure; lung mechanics; pulmonary circulations; respiratory rate; short-term regulatory mechanisms; systemic arterial pressure; systemic circulations; tidal volume; transport equations; ventilation; Blood Pressure; Computer Simulation; Heart; Heart Rate; Humans; Hypercapnia; Lung; Models, Biological; Pulmonary Gas Exchange; Respiratory Insufficiency;
Conference_Titel :
Engineering in Medicine and Biology Society, 2009. EMBC 2009. Annual International Conference of the IEEE
Conference_Location :
Minneapolis, MN
Print_ISBN :
978-1-4244-3296-7
Electronic_ISBN :
1557-170X
DOI :
10.1109/IEMBS.2009.5334567