Showing posts with label biomedical engineering. Show all posts
Showing posts with label biomedical engineering. Show all posts

12/26/2011

Biomechanics and Exercise Physiology: Quantitative Modeling Review

Biomechanics and Exercise Physiology: Quantitative Modeling
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This book covers quantitative physiology under the particularly stressful conditions of exercise. It is divided into five basic sections: Exercise limitations, exercise biomechanics, cardiovascular responses, respiratory responses, and thermal responses. The author has obviously done a lot of research into the vast body of literature on mathematical modeling of physiological systems. When models are not covered in detail, he gives references to many sources.
As a biomedical engineer, I have used this book regularly to obtain such things as functions describing the relationship of exercise level and oxygen consumption and references to who has done mathematical models of the thermoregulatory system. This book should be on the shelf of anyone who is interested in quantitative physiology, or of engineers designing sports equipment or other similar biomedical devices.

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Whether you are a bioengineer designing prosthetics, an aerospace scientist involved in life support, a kinesiologist training athletes, or an occupational physician prescribing an exercise regimen, you need the latest edition of Biomechanics and Exercise Physiology: Quantitative Modeling. Using numerous worked examples to demonstrate what and when to calculate, this book covers more than the fundamentals of exercise physiology and shows you how to calculate responses magnitudes. The second edition improves upon the first edition with inclusion of numerical examples, homework problems, margin notes, and updated material.The five sections cover the energetics of exercise, biomechanics, circulation, respiration, and thermoregulation. The author explains physiological models, demonstrating the conversion of physiology into quantitative form. Tables of values, diagrams, and figures make this book helpful for estimating magnitudes, determining trends, and illustrating concepts. The book emphasizes quantitative mathematical models if possible and conceptual models when mathematical models are not available.Covering a broad scope of material, the author emphasizes quantitative description as much as possible. The book demonstrates the vast amount of physiological material that can be quantitatively predicted and how to translate this information into applications.

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11/13/2011

Biomedical Signal Processing and Signal Modeling Review

Biomedical Signal Processing and Signal Modeling
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Good book for looking at the mathematics behind biomedical signal processing. If your going to use Matlab in conjunction with your study of this book, I used "Biosignal and Biomedical Image Processing: Matlab-Based Applications," by John L. Semmlow.

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A biomedical engineering perspective on the theory, methods, and applications of signal processing This book provides a unique framework for understanding signal processing of biomedical signals and what it tells us about signal sources and their behavior in response to perturbation. Using a modeling-based approach, the author shows how to perform signal processing by developing and manipulating a model of the signal source, providing a logical, coherent basis for recognizing signal types and for tackling the special challenges posed by biomedical signals-including the effects of noise on the signal, changes in basic properties, or the fact that these signals contain large stochastic components and may even be fractal or chaotic. Each chapter begins with a detailed biomedical example, illustrating the methods under discussion and highlighting the interconnection between the theoretical concepts and applications. The author has enlisted experts from numerous subspecialties in biomedical engineering to help develop these examples and has made most examples available as Matlab or Simulink files via anonymous ftp. Without the need for a background in electrical engineering, readers will become acquainted with proven techniques for analyzing biomedical signals and learn how to choose the appropriate method for a given application.
An Instructor's Manual presenting detailed solutions to all the problems in the book is available from the author.

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