DocumentCode :
2098752
Title :
Autonomic-cardiorespiratory regulation: A physiology-based mathematical model
Author :
Ataee, P. ; Belingard, L. ; Dumont, Guy A. ; Noubari, H.A. ; Boyce, W.T.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of British Columbia, Vancouver, BC, Canada
fYear :
2012
fDate :
Aug. 28 2012-Sept. 1 2012
Firstpage :
3805
Lastpage :
3808
Abstract :
This paper presents a novel physiology-based mathematical model of autonomic-cardiorespiratory regulation described by a set of three nonlinear, coupled differential equations. We improved our previously proposed autonomic-cardiac regulation model by considering neuromechanical and mechanical coupling of cardiovascular and respiration systems including lung stretch-receptor reflex and venous return variation. We also introduced a differential equation describing respiration rate regulation which mainly originates in the medullary respiratory center. The results of simulation experiments suggest that the venous return variation generates a higher perturbation on heart rate and blood pressure than lung stretch-receptor reflex. The proposed model is also powerful in determining and removing direct respiratory impacts on parasympathetic activation tone to accurately extract parasympathetic activity caused by emotional states and environmental conditions.
Keywords :
blood pressure measurement; cardiovascular system; differential equations; lung; nonlinear equations; physiological models; pneumodynamics; autonomic-cardiac regulation model; autonomic-cardiorespiratory regulation; blood pressure variability; coupled differential equation; emotional states; environmental condition; heart rate; lung stretch-receptor reflex; medullary respiratory center; neuromechanical coupling; nonlinear equation; parasympathetic activation tone; physiology-based mathematical model; respiration rate regulation; venous return variation; Blood pressure; Couplings; Heart rate variability; Lungs; Mathematical model; Physiology; Autonomic Nervous System; Blood Pressure; Heart; Heart Rate; Humans; Models, Cardiovascular; Respiration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2012 Annual International Conference of the IEEE
Conference_Location :
San Diego, CA
ISSN :
1557-170X
Print_ISBN :
978-1-4244-4119-8
Electronic_ISBN :
1557-170X
Type :
conf
DOI :
10.1109/EMBC.2012.6346796
Filename :
6346796
Link To Document :
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