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A Parametric Framework for Modelling of Bioelectrical Signals (eBook)

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2016 | 1st ed. 2016
XV, 81 Seiten
Springer Singapore (Verlag)
978-981-287-969-1 (ISBN)

Lese- und Medienproben

A Parametric Framework for Modelling of Bioelectrical Signals - Yar M. Mughal
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This book examines non-invasive, electrical-based methods for disease diagnosis and assessment of heart function. In particular, a formalized signal model is proposed since this offers several advantages over methods that rely on measured data alone. By using a formalized representation, the parameters of the signal model can be easily manipulated and/or modified, thus providing mechanisms that allow researchers to reproduce and control such signals. In addition, having such a formalized signal model makes it possible to develop computer tools that can be used for manipulating and understanding how signal changes result from various heart conditions, as well as for generating input signals for experimenting with and evaluating the performance of e.g. signal extraction methods. The work focuses on bioelectrical information, particularly electrical bio-impedance (EBI). Once the EBI has been measured, the corresponding signals have to be modelled for analysis. This requires a structured approach in order to move from real measured data to the model of the corresponding signals. This book proposes a generic framework for this procedure. It can be used as a guide for modelling impedance cardiography (ICG) and impedance respirography (IRG) signals, as well as for developing the corresponding bio-impedance signal simulator (BISS).


This book examines non-invasive, electrical-based methods for disease diagnosis and assessment of heart function. In particular, a formalized signal model is proposed since this offers several advantages over methods that rely on measured data alone. By using a formalized representation, the parameters of the signal model can be easily manipulated and/or modified, thus providing mechanisms that allow researchers to reproduce and control such signals. In addition, having such a formalized signal model makes it possible to develop computer tools that can be used for manipulating and understanding how signal changes result from various heart conditions, as well as for generating input signals for experimenting with and evaluating the performance of e.g. signal extraction methods. The work focuses on bioelectrical information, particularly electrical bio-impedance (EBI). Once the EBI has been measured, the corresponding signals have to be modelled for analysis. This requires a structured approach in order to move from real measured data to the model of the corresponding signals. This book proposes a generic framework for this procedure. It can be used as a guide for modelling impedance cardiography (ICG) and impedance respirography (IRG) signals, as well as for developing the corresponding bio-impedance signal simulator (BISS).

Introduction and Motivation.- State of the Art of Modelling and Simulation of the Physiological Systems.- Proposed Novel Generic Framework for Modelling the Bioelectrical Information.- Implementation of the Framework and the Experimental Results.- Conclusions.

Erscheint lt. Verlag 5.1.2016
Reihe/Serie Series in BioEngineering
Series in BioEngineering
Zusatzinfo XV, 81 p. 42 illus., 5 illus. in color.
Verlagsort Singapore
Sprache englisch
Themenwelt Mathematik / Informatik Informatik
Medizinische Fachgebiete Innere Medizin Kardiologie / Angiologie
Medizinische Fachgebiete Innere Medizin Pneumologie
Medizinische Fachgebiete Radiologie / Bildgebende Verfahren Radiologie
Medizin / Pharmazie Physiotherapie / Ergotherapie Orthopädie
Naturwissenschaften Physik / Astronomie Angewandte Physik
Technik Elektrotechnik / Energietechnik
Schlagworte Bio-Impedance Signal Simulator (BISS) • cardiography • Cardiovascular Simulator (CVS) • Eectrical bioimpedance (EBI) • impedance cardiography (ICG) • impedance respirography (IRG) • Transthoracic Electrical Bioimpedance Spectroscopy
ISBN-10 981-287-969-2 / 9812879692
ISBN-13 978-981-287-969-1 / 9789812879691
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