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A Parametric Framework for Modelling of Bioelectrical SignalsState of the Art of Modelling and Simulation of the Physiological Systems

A Parametric Framework for Modelling of Bioelectrical Signals: State of the Art of Modelling and... [This chapter reviews the physiology of the cardiovascular system in order to understand its main mechanisms and parameters, which are of interest in this work. This chapter also describes other researchers’ approaches to developing cardiovascular system models as well as three simulation examples, namely (a) a cardiovascular simulator (“CVSim”), (b) a software tool for analysing breathing-related errors in transthoracic electrical bio-impedance spectroscopy measurements, and (c) simulation of lung edema in impedance cardiography.] http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png

A Parametric Framework for Modelling of Bioelectrical SignalsState of the Art of Modelling and Simulation of the Physiological Systems

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/lp/springer-journals/a-parametric-framework-for-modelling-of-bioelectrical-signals-state-of-ymPTYP011U
Publisher
Springer Singapore
Copyright
© Springer Science+Business Media Singapore 2016
ISBN
978-981-287-968-4
Pages
9 –35
DOI
10.1007/978-981-287-969-1_2
Publisher site
See Chapter on Publisher Site

Abstract

[This chapter reviews the physiology of the cardiovascular system in order to understand its main mechanisms and parameters, which are of interest in this work. This chapter also describes other researchers’ approaches to developing cardiovascular system models as well as three simulation examples, namely (a) a cardiovascular simulator (“CVSim”), (b) a software tool for analysing breathing-related errors in transthoracic electrical bio-impedance spectroscopy measurements, and (c) simulation of lung edema in impedance cardiography.]

Published: Jan 6, 2016

Keywords: Stroke Volume; Electrical Impedance Tomography; Total Peripheral Resistance; Respiratory Signal; Haemodynamic Parameter

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