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Fundamentals of Chaos and Fractals f...
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Fundamentals of Chaos and Fractals for Cardiology
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Fundamentals of Chaos and Fractals for Cardiology / by Gary Drzewiecki.
Author:
Drzewiecki, Gary.
Description:
XI, 138 p. 103 illus., 62 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Biomedical engineering. -
Online resource:
https://doi.org/10.1007/978-3-030-88968-5
ISBN:
9783030889685
Fundamentals of Chaos and Fractals for Cardiology
Drzewiecki, Gary.
Fundamentals of Chaos and Fractals for Cardiology
[electronic resource] /by Gary Drzewiecki. - 1st ed. 2021. - XI, 138 p. 103 illus., 62 illus. in color.online resource.
Introduction -- Part 1 - Nonlinear Dynamics -- Topics in Nonlinear Biodynamics -- Bifurcation Mapping and Chaos -- Identifying Chaos -- Controlling Chaos -- Nonlinear Cardiology -- Part 2 –Fractals -- Fractal Geometry -- Fractal Time and Noise -- Biomedical Signal Analysis and Fractal Time -- Deterministic fractals -- Fractals and the Cardiovascular System -- Recurrence and the Embedding Dimension -- Part 3 – Applications -- Nonlinear Flow Dynamics and Chaos in a Flexible Vessel Model -- The origin of heart rate variation using a Nonlinear modeling approach -- Nonlinear Oscillator Circuit Model -- Index.
This textbook serves as an introduction to nonlinear dynamics and fractals for physiological modeling. Examples and demonstrations from current research in cardiopulmonary engineering and neuro-systems engineering are provided, as well as lab and computer exercises that encourage readers to apply the course material. This is an ideal textbook for graduate students in biomedical engineering departments, researchers who analyze physiological data, and researchers interested in physiological modeling.
ISBN: 9783030889685
Standard No.: 10.1007/978-3-030-88968-5doiSubjects--Topical Terms:
588770
Biomedical engineering.
LC Class. No.: R856-857
Dewey Class. No.: 610.28
Fundamentals of Chaos and Fractals for Cardiology
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Introduction -- Part 1 - Nonlinear Dynamics -- Topics in Nonlinear Biodynamics -- Bifurcation Mapping and Chaos -- Identifying Chaos -- Controlling Chaos -- Nonlinear Cardiology -- Part 2 –Fractals -- Fractal Geometry -- Fractal Time and Noise -- Biomedical Signal Analysis and Fractal Time -- Deterministic fractals -- Fractals and the Cardiovascular System -- Recurrence and the Embedding Dimension -- Part 3 – Applications -- Nonlinear Flow Dynamics and Chaos in a Flexible Vessel Model -- The origin of heart rate variation using a Nonlinear modeling approach -- Nonlinear Oscillator Circuit Model -- Index.
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This textbook serves as an introduction to nonlinear dynamics and fractals for physiological modeling. Examples and demonstrations from current research in cardiopulmonary engineering and neuro-systems engineering are provided, as well as lab and computer exercises that encourage readers to apply the course material. This is an ideal textbook for graduate students in biomedical engineering departments, researchers who analyze physiological data, and researchers interested in physiological modeling.
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