DocumentCode
2355275
Title
An approach to estimate the nonlinearity in right ventricular dynamics
Author
Nath, N.G. ; Das, A.
Author_Institution
Div. of Biomed. Electron., Calcutta Univ., India
fYear
1995
fDate
15-18 Feb 1995
Firstpage
17593
Lastpage
17958
Abstract
A method for estimation of nonlinearity in right ventricular dynamics employing the input-error approach is described. A basic electrical analog of the circulation dynamics is considered that is applicable only during linear operation in the cardiac performance interval. A feedback system describing the linear dynamics of the circulation process is developed. To make the system applicable to the entire cardiac cycle, a signal actuating the system is assumed to be present, in addition to the normal one, at the input side of the system. This gives rise to an input error in the developed linear model of the system dynamics. This input error, which accounts for the nonlinearity involved in the circulation dynamics, is determined. Use of the knowledge of the determined input error in estimating the nonlinearity involved in the right ventricular process parameters is indicated
Keywords
cardiology; errors; feedback; haemodynamics; nonlinear dynamical systems; parameter estimation; physiological models; actuating signal; blood circulation dynamics; cardiac performance interval; electrical analogue; feedback system; input-error approach; linear dynamics; linear model; linear operation; right ventricular dynamics; ventricular nonlinearity estimation; Biomedical electronics; Blood flow; Control theory; Equations; Feedback; Injuries; Nonlinear dynamical systems; Nonlinear systems; Parameter estimation; Reactive power;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society, 1995 and 14th Conference of the Biomedical Engineering Society of India. An International Meeting, Proceedings of the First Regional Conference., IEEE
Conference_Location
New Delhi
Print_ISBN
0-7803-2711-X
Type
conf
DOI
10.1109/RCEMBS.1995.532970
Filename
532970
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