Model-Based Approaches in Biomedical Engineering

The advent of high-performance computing has benefited various disciplines including healthcare. Enhanced computational capabilities have helped biomedical engineers reach practical solutions to sophisticated and complex biophysical and physiological problems.

This book addresses two leading model-based approaches, including, mechanistic modelling and physiological modelling, and their applications in biomedical engineering. Various topics in healthcare and medicine, their comprehension through ordinary and partial differential equations and their solution utilizing appropriate numerical strategy are considered. The text is divided into two parts. Part I of the book explores the concept and application of mechanistic modelling, while Part II deals with content relevant to physiological modelling. This practical guide is a key text for undergraduate students studying biomedical engineering and researchers in the field of biomedical engineering and healthcare.

Key Features:

  • Covers two leading computational modelling approaches in biomedical engineering and their applications in healthcare.

  • Each chapter is standalone, making the book a practical guide for readers who want to explore computational modelling in biomedical engineering.

  • Case studies are used throughout to help readers connect theory with practice.

  • Discusses a wide range of topics in biomedical engineering including thermal therapy, drug delivery, blood flow, respiratory mechanics, glucose-insulin, and cardiovascular systems

"1143315258"
Model-Based Approaches in Biomedical Engineering

The advent of high-performance computing has benefited various disciplines including healthcare. Enhanced computational capabilities have helped biomedical engineers reach practical solutions to sophisticated and complex biophysical and physiological problems.

This book addresses two leading model-based approaches, including, mechanistic modelling and physiological modelling, and their applications in biomedical engineering. Various topics in healthcare and medicine, their comprehension through ordinary and partial differential equations and their solution utilizing appropriate numerical strategy are considered. The text is divided into two parts. Part I of the book explores the concept and application of mechanistic modelling, while Part II deals with content relevant to physiological modelling. This practical guide is a key text for undergraduate students studying biomedical engineering and researchers in the field of biomedical engineering and healthcare.

Key Features:

  • Covers two leading computational modelling approaches in biomedical engineering and their applications in healthcare.

  • Each chapter is standalone, making the book a practical guide for readers who want to explore computational modelling in biomedical engineering.

  • Case studies are used throughout to help readers connect theory with practice.

  • Discusses a wide range of topics in biomedical engineering including thermal therapy, drug delivery, blood flow, respiratory mechanics, glucose-insulin, and cardiovascular systems

71.49 In Stock
Model-Based Approaches in Biomedical Engineering

Model-Based Approaches in Biomedical Engineering

Model-Based Approaches in Biomedical Engineering

Model-Based Approaches in Biomedical Engineering

eBook

$71.49  $95.00 Save 25% Current price is $71.49, Original price is $95. You Save 25%.

Available on Compatible NOOK devices, the free NOOK App and in My Digital Library.
WANT A NOOK?  Explore Now

Related collections and offers


Overview

The advent of high-performance computing has benefited various disciplines including healthcare. Enhanced computational capabilities have helped biomedical engineers reach practical solutions to sophisticated and complex biophysical and physiological problems.

This book addresses two leading model-based approaches, including, mechanistic modelling and physiological modelling, and their applications in biomedical engineering. Various topics in healthcare and medicine, their comprehension through ordinary and partial differential equations and their solution utilizing appropriate numerical strategy are considered. The text is divided into two parts. Part I of the book explores the concept and application of mechanistic modelling, while Part II deals with content relevant to physiological modelling. This practical guide is a key text for undergraduate students studying biomedical engineering and researchers in the field of biomedical engineering and healthcare.

Key Features:

  • Covers two leading computational modelling approaches in biomedical engineering and their applications in healthcare.

  • Each chapter is standalone, making the book a practical guide for readers who want to explore computational modelling in biomedical engineering.

  • Case studies are used throughout to help readers connect theory with practice.

  • Discusses a wide range of topics in biomedical engineering including thermal therapy, drug delivery, blood flow, respiratory mechanics, glucose-insulin, and cardiovascular systems


Product Details

ISBN-13: 9780750340168
Publisher: Institute of Physics Publishing
Publication date: 05/15/2023
Series: IPEM-IOP Series in Physics and Engineering in Medicine and Biology
Sold by: Barnes & Noble
Format: eBook
Pages: 300
File size: 19 MB
Note: This product may take a few minutes to download.

About the Author

Ean Hin Ooi is an Associate Profeesor at Monash University Malaysia. He is an Associate Editor for the journal Computer Methods and Programs in Biomedicine and Journal of Mechanics in Medicine and Biology. He is also a technical consultant for Ascend Technologies Ltd, United Kingdom. He has published 71 refereed journal papers, 14 conference proceedings and 8 book chapters.

Yeong Shiong Chiew is a Senior Lecturer at Monash University Malaysia, as well as a visiting researcher at the University of Liege, Belgium. He is an Academic Editor for Biomed Research International and BMC Pulmonary Medicine. He has published 61 refereed journal articles, and more than 100 conference papers and abstracts, largely dealing with various modelling aspects in biomedical engineering.

Table of Contents

Chapter 1: Introduction to Biomedical Engineering
Chapter 2: Mechanistic Modelling
Chapter 3: Review on the Finite Element Method
Chapter 4: Heat Transfer in Biological Tissues
Chapter 5: Blood Flow in the Vasculature
Chapter 6: Transport in Biological Tissues
Chapter 7: Physiological Modelling and Data Analytics
Chapter 8: Glucose Insulin System
Chapter 9: Respiratory System
Chapter 10: Cardiovascular System
Chapter 11: Ethics and Biosafety

From the B&N Reads Blog

Customer Reviews