Modeling And Control In Biomedical Systems

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Modelling Optimization and Control of Biomedical Systems

Author : Efstratios N. Pistikopoulos,Ioana Nascu,Eirini G. Velliou
Publisher : John Wiley & Sons
Page : 326 pages
File Size : 52,8 Mb
Release : 2018-01-09
Category : Technology & Engineering
ISBN : 9781118965597

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Modelling Optimization and Control of Biomedical Systems by Efstratios N. Pistikopoulos,Ioana Nascu,Eirini G. Velliou Pdf

Shows the newest developments in the field of multi-parametric model predictive control and optimization and their application for drug delivery systems This book is based on the Modelling, Control and Optimization of Biomedical Systems (MOBILE) project, which was created to derive intelligent computer model-based systems for optimization of biomedical drug delivery systems in the cases of diabetes, anaesthesia, and blood cancer. These systems can ensure reliable and fast calculation of the optimal drug dosage without the need for an online computer—while taking into account the specifics and constraints of the patient model, flexibility to adapt to changing patient characteristics and incorporation of the physician’s performance criteria, and maintaining the safety of the patients. Modelling Optimization and Control of Biomedical Systems covers: mathematical modelling of drug delivery systems; model analysis, parameter estimation, and approximation; optimization and control; sensitivity analysis & model reduction; multi-parametric programming and model predictive control; estimation techniques; physiologically-based patient model; control design for volatile anaesthesia; multiparametric model based approach to intravenous anaesthesia; hybrid model predictive control strategies; Type I Diabetes Mellitus; in vitro and in silico block of the integrated platform for the study of leukaemia; chemotherapy treatment as a process systems application; and more. Introduces readers to the Modelling, Control and Optimization of Biomedical Systems (MOBILE) project Presents in detail the theoretical background, computational tools, and methods that are used in all the different biomedical systems Teaches the theory for multi-parametric mixed-integer programming and explicit optimal control of volatile anaesthesia Provides an overview of the framework for modelling, optimization, and control of biomedical systems This book will appeal to students, researchers, and scientists working on the modelling, control, and optimization of biomedical systems and to those involved in cancer treatment, anaesthsia, and drug delivery systems.

Modeling and Control in the Biomedical Sciences

Author : Harvey Thomas Banks
Publisher : Springer
Page : 136 pages
File Size : 44,5 Mb
Release : 1975
Category : Mathematics
ISBN : UOM:39015004349786

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Modeling and Control in the Biomedical Sciences by Harvey Thomas Banks Pdf

These notes are based on (i) a series of lectures that I gave at the 14th Biennial Seminar of the Canadian Mathematical Congress held at the University of Western Ontario August 12-24, 1973 and (li) some of my lectures in a modeling course that I have cotaught in the Division of Bio-Medical Sciences at Brown during the past several years. An earlier version of these notes appeared in the Center for Dynamical Systems Lectures Notes series (CDS LN 73-1, November 1973). I have in this revised and extended version of those earlier notes incorporated a number of changes based both on classroom experience and on my research efforts with several colleagues during the intervening period. The narrow viewpoint of the present notes (use of optimization and control theory in biomedical problems) reflects more the scope of the CMC lectures given in August, 1973 than the scope of my own interests. Indeed, my real interests have included the modeling process itself as well as the contributions made by investiga- tors who employ the techniques and ideas of control theory, systems analysis, dif- ferential equations, and stochastic processes. Some of these contributions have quite naturally involved application of optimal control theory. But in my opinion many of the interesting efforts being made in modeling in the biomedical sciences encompass much more than the use of control theory.

Mathematical Modelling in Biomedicine

Author : Y. Cherruault
Publisher : Springer Science & Business Media
Page : 286 pages
File Size : 52,6 Mb
Release : 1986-02-28
Category : Mathematics
ISBN : 9027721491

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Mathematical Modelling in Biomedicine by Y. Cherruault Pdf

Approach your problems from the right It isn't that they can't see the solution. It end and begin with the answers. Then is that they can't see the problem. one day, perhaps you will find the final question. G.K. Chesterton. The Scandal of Father Brown 'The point of a Pin'. 'The Hermit Clad in Crane Feathers' in R. van Gulik's The Chinese Maze Murders. Growing specialization and diversification have brought a host of monographs and textbooks on increasingly specialized topics. However, the "tree" of knowledge of mathematics and related fields does not grow only by putting forth new branches. It also happens, quite often in fact, that branches which were thought to be completely disparate are suddenly seen to be related. Further, the kind and level of sophistication of mathematics applied in various sciences has changed drastically in recent years: measure theory is used (non-trivially) in regional and theoretical economics; algebraic geometry interacts with physics; the Minkowsky lemma, cod ing theory and the structure of water meet one another in packing and covering theory; quantum fields, crystal defects and mathematical pro gramming profit from homotopy theory; Lie algebras are relevant to filtering; and prediction and electrical engineering can use Stein spaces.

Control Applications for Biomedical Engineering Systems

Author : Ahmad Taher Azar
Publisher : Academic Press
Page : 476 pages
File Size : 50,5 Mb
Release : 2020-01-22
Category : Computers
ISBN : 9780128174623

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Control Applications for Biomedical Engineering Systems by Ahmad Taher Azar Pdf

Control Applications for Biomedical Engineering Systems presents different control engineering and modeling applications in the biomedical field. It is intended for senior undergraduate or graduate students in both control engineering and biomedical engineering programs. For control engineering students, it presents the application of various techniques already learned in theoretical lectures in the biomedical arena. For biomedical engineering students, it presents solutions to various problems in the field using methods commonly used by control engineers. Points out theoretical and practical issues to biomedical control systems Brings together solutions developed under different settings with specific attention to the validation of these tools in biomedical settings using real-life datasets and experiments Presents significant case studies on devices and applications

Modelling and Control in Biomedical Systems 2006

Author : David Dagan Feng,Janan Zaytoon
Publisher : Elsevier
Page : 920 pages
File Size : 44,6 Mb
Release : 2006-09-19
Category : Technology & Engineering
ISBN : 0080479499

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Modelling and Control in Biomedical Systems 2006 by David Dagan Feng,Janan Zaytoon Pdf

Modelling and Control in Biomedical Systems (including Biological Systems) was held in Reims, France, 20-22 August 2006. This Symposium was organised by the University of Reims Champagne Ardenne and the Société de l’Electricité, de l’Electronique et des TIC (SEE). The Symposium attracted practitioners in engineering, information technology, mathematics, medicine and biology, and other related disciplines, with authors from 24 countries. Besides the abstracts of the four plenary lectures, this volume contains the 92 papers that were presented by their authors at the Symposium. The papers included two invited keynote presentations given by internationally prominent and well-recognised research leaders: Claudio Cobelli, whose talk is titled "Dynamic modelling in diabetes: from whole body to genes"; and Irving J. Bigio, whose talk is titled "Elastic scattering spectroscopy for non-invasive detection of cancer". Two prestigious industrial speakers were also invited to give keynote presentations: Terry O'Brien from LIDCO, whose talk is titled "LIDCO: From the laboratory to protocolized goal directed therapy"; and Lorenzo Quinzio of Philips, whose talk is titled "Clinical decision support in monitoring and information systems". A valuable source of information on the state-of- the-art in Modelling and Control in Biomedical Systems Including abstracts of four plenary lectures, and 92 papers presented by their authors

Modelling and Control in Biomedical Systems

Author : Claudio Cobelli,L. Mariani
Publisher : Pergamon
Page : 696 pages
File Size : 48,7 Mb
Release : 1989
Category : Medical
ISBN : UOM:39015013838597

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Modelling and Control in Biomedical Systems by Claudio Cobelli,L. Mariani Pdf

Hardbound. This volume provides a complete and up-to-date review of the recent developments and trends relating to modelling and control in biomedical systems in research, diagnosis and therapy. Focus is placed on methodological issues relevant to modelling and control as well as to the various physiological systems of the organism visited from a control viewpoint. Contains 98 papers.

Signals and Systems in Biomedical Engineering

Author : Suresh R. Devasahayam
Publisher : Springer Science & Business Media
Page : 348 pages
File Size : 43,6 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9781461542995

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Signals and Systems in Biomedical Engineering by Suresh R. Devasahayam Pdf

In the past few years Biomedical Engineering has received a great deal of attention as one of the emerging technologies in the last decade and for years to come, as witnessed by the many books, conferences, and their proceedings. Media attention, due to the applications-oriented advances in Biomedical Engineering, has also increased. Much of the excitement comes from the fact that technology is rapidly changing and new technological adventures become available and feasible every day. For many years the physical sciences contributed to medicine in the form of expertise in radiology and slow but steady contributions to other more diverse fields, such as computers in surgery and diagnosis, neurology, cardiology, vision and visual prosthesis, audition and hearing aids, artificial limbs, biomechanics, and biomaterials. The list goes on. It is therefore hard for a person unfamiliar with a subject to separate the substance from the hype. Many of the applications of Biomedical Engineering are rather complex and difficult to understand even by the not so novice in the field. Much of the hardware and software tools available are either too simplistic to be useful or too complicated to be understood and applied. In addition, the lack of a common language between engineers and computer scientists and their counterparts in the medical profession, sometimes becomes a barrier to progress.

Modelling and Control in Biomedical Systems 1997 (including Biological Systems)

Author : D. A. Linkens,Ewart R. Carson
Publisher : Pergamon
Page : 386 pages
File Size : 44,6 Mb
Release : 1997
Category : Mathematics
ISBN : UOM:39015047104552

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Modelling and Control in Biomedical Systems 1997 (including Biological Systems) by D. A. Linkens,Ewart R. Carson Pdf

Paperback. This volume contains the 90 papers presented at the 3rd IFAC Symposium on Modelling and Control in Biomedical Systems held in Warwick, UK from 23-26 March 1997. Significant work in the field of biomedical systems analysis and design is taking place throughout the world and the opportunities for technological interchanges offered by symposia like this one are extremely valuable for the progress and stability of effort and vision in this important human-centred field.The symposium was multi- and inter-disciplinary in nature with the choice of topics solicited covering the major systems' components and functions of complex physiology. The remit was also extended, on this occasion, beyond mammalian physiology to that of biological systems. Therefore, a special session was devoted to the modelling and control of botanical systems with the aim of providing an exchange of ideas with biomathematicians.

Modeling and Simulation in Biomedical Engineering: Applications in Cardiorespiratory Physiology

Author : Willem L. van Meurs
Publisher : McGraw Hill Professional
Page : 216 pages
File Size : 43,6 Mb
Release : 2011-08-07
Category : Technology & Engineering
ISBN : 9780071714464

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Modeling and Simulation in Biomedical Engineering: Applications in Cardiorespiratory Physiology by Willem L. van Meurs Pdf

THEORY AND PRACTICE OF MODELING AND SIMULATING HUMAN PHYSIOLOGY Written by a coinventor of the Human Patient Simulator (HPS) and past president of the Society in Europe for Simulation Applied to Medicine (SESAM), Modeling and Simulation in Biomedical Engineering: Applications in Cardiorespiratory Physiology is a compact and consistent introduction to this expanding field. The book divides the modeling and simulation process into five manageable steps--requirements, conceptual models, mathematical models, software implementation, and simulation results and validation. A framework and a basic set of deterministic, continuous-time models for the cardiorespiratory system are provided. This timely resource also addresses advanced topics, including sensitivity analysis and setting model requirements as part of an encompassing simulation and simulator design. Practical examples provide you with the skills to evaluate and adapt existing physiologic models or create new ones for specific applications. Coverage includes: Signals and systems Model requirements Conceptual models Mathematical models Software implementation Simulation results and model validation Cardiorespiratory system model Circulation Respiration Physiologic control Sensitivity analysis of a cardiovascular model Design of model-driven acute care training simulators “Uniquely qualified to author such a text, van Meurs is one of the original developers of CAE Healthcare’s Human Patient Simulator (HPS). ...His understanding of mathematics, human physiology, pharmacology, control systems, and systems engineering, combined with a conversational writing style, results in a readable text. ...The ample illustrations and tables also break up the text and make reading the book easier on the eyes. ...concise yet in conversational style, with real-life examples. This book is highly recommended for coursework in physiologic modeling and for all who are interested in simulator design and development. The book pulls all these topics together under one cover and is an important contribution to biomedical literature.” --IEEE Pulse, January 2014 “This book is written by a professional engineer who is unique in that he seems to have a natural understanding of 3 key areas as follows: the hardware involved with simulators, human physiology, and mathematical modeling. Willem van Meurs is one of the inventors of the model-driven human patient simulator (HPS), and so, he is very qualified to write this book. The book is written in a clear way, using the first person throughout, in a conversational manner, with a style that involves posing questions and answering them in subsequent text. ...The book starts with a very useful introduction and background chapter, setting out the scene for the rest of the book. ...I have used his book in enhancing my own talks and understanding human patient simulation and can strongly recommend it.” --Simulation in Healthcare December, 2012 Reviewed by Mark A. Tooley, Ph.D., Department of Medical Physics and Bioengineering, Royal United Hospital, Combe Park, Bath, UK.

Introduction to Modeling in Physiology and Medicine

Author : Claudio Cobelli,Ewart Carson
Publisher : Elsevier
Page : 337 pages
File Size : 55,8 Mb
Release : 2008-02-06
Category : Technology & Engineering
ISBN : 9780080559988

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Introduction to Modeling in Physiology and Medicine by Claudio Cobelli,Ewart Carson Pdf

This unified modeling textbook for students of biomedical engineering provides a complete course text on the foundations, theory and practice of modeling and simulation in physiology and medicine. It is dedicated to the needs of biomedical engineering and clinical students, supported by applied BME applications and examples. Developed for biomedical engineering and related courses: speaks to BME students at a level and in a language appropriate to their needs, with an interdisciplinary clinical/engineering approach, quantitative basis, and many applied examples to enhance learning Delivers a quantitative approach to modeling and also covers simulation: the perfect foundation text for studies across BME and medicine Extensive case studies and engineering applications from BME, plus end-of-chapter exercises

Automatic Control Systems in Biomedical Engineering

Author : J. Fernández de Cañete,C. Galindo,J. Barbancho,A. Luque
Publisher : Springer
Page : 364 pages
File Size : 49,9 Mb
Release : 2018-03-12
Category : Technology & Engineering
ISBN : 9783319757179

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Automatic Control Systems in Biomedical Engineering by J. Fernández de Cañete,C. Galindo,J. Barbancho,A. Luque Pdf

This book presents the fundamental principles and challenges encountered in the control of biomedical systems, providing practical solutions and suggesting alternatives. The perspective of the text is based on the system behaviour in the time domain both linear and non-linear, continuous and discrete, helping the reader to be able to interpret the physical significance of mathematical results during control system analysis and design focusing on biomedical engineering applications. Interactive learning is promoted, endowing students with the ability to change parameters and conditions during the simulation and see the effects of these changes, by using interactive MATLAB and SIMULINK software tools, also presenting realistic problems in order to analyse, design and develop automatic control systems. The text is also complemented with MATLAB and SIMULINK exercise files solved to aid students to focus on the fundamental concepts treated throughout the book, following a new pedagogical approach distinct from the classical one whereby fundamental control concepts are introduced together with adequate software tools in order to gain insight on the biomedical engineering control problems. The book is suitable for second or third-year undergraduate students who will find the illustrative examples particularly useful to their studies of control system design and implementation. Lecturers in the control field will find the computer aided design approach as an alternative to teaching the fundamental concepts of feedback analogic and digital control.

Biomedical Modeling and Simulation on a PC

Author : Rogier P.van Wijk van Brievingh,Dietmar P.F. Möller,Xun Shen
Publisher : Springer Science & Business Media
Page : 533 pages
File Size : 42,7 Mb
Release : 2013-03-12
Category : Science
ISBN : 9781461391630

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Biomedical Modeling and Simulation on a PC by Rogier P.van Wijk van Brievingh,Dietmar P.F. Möller,Xun Shen Pdf

I have long had an interest in the life sciences, but have had few opportunities to indulge that interest in my professional activities. It has only been through simulation that those opportunities have arisen. Some of my most enjoyable classes were those I taught to students in the life sciences, where I attempted to show them the value of simulation to their discipline. That there is such a value cannot be questioned. Whether you are interested in population ecology, phar macokinetics, the cardiovascular system, or cell interaction, simulation can play a vital role in explaining the underlying processes and in enhancing our understanding of these processes. This book comprises an excellent collection of contributions, and clearly demonstrates the value of simulation in the particular areas of physiology and bioengineering. My main frustration when teaching these classes to people with little or no computer background was the lack of suitable simulation software. This di rectly inspired my own attempts at producing software usable by the computer novice. It is especially nice that software is available that enables readers to experience the examples in this book for themselves. I would like to congratulate and thank the editors, Rogier P. van Wijk van Brievingh and Dietmar P. P. Moller, for all of their excellent efforts. They should be proud of their achievement. This is the sixth volume in the Advances in Simulation series, and other volumes are in preparation.

Modelling and Control in Biomedical Systems 2003 (including Biological Systems)

Author : David Dagan Feng,Ewart R. Carson
Publisher : Pergamon Press
Page : 538 pages
File Size : 44,5 Mb
Release : 2003
Category : Technology & Engineering
ISBN : 0080441599

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Modelling and Control in Biomedical Systems 2003 (including Biological Systems) by David Dagan Feng,Ewart R. Carson Pdf

The first IFAC conference and thus proceedings to be specifically devoted to this field Presents the findings of experts and practitioners from the major soft- computing themes Provides an overview of the theory and applications of biomedical systems This proceedings volume contains 98 papers, which have all gone through the full-paper peer review process. Modelling and Control in Biomedical Systems 2003 also includes abstracts of the two invited keynote presentations given by internationally prominent and well recognized research leaders.

Introduction to Modeling and Numerical Methods for Biomedical and Chemical Engineers

Author : Edward Gatzke
Publisher : Springer Nature
Page : 292 pages
File Size : 52,6 Mb
Release : 2024-06-19
Category : Biomedical engineering
ISBN : 9783030764494

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Introduction to Modeling and Numerical Methods for Biomedical and Chemical Engineers by Edward Gatzke Pdf

This textbook introduces the concepts and tools that biomedical and chemical engineering students need to know in order to translate engineering problems into a numerical representation using scientific fundamentals. Modeling concepts focus on problems that are directly related to biomedical and chemical engineering. A variety of computational tools are presented, including MATLAB, Excel, Mathcad, and COMSOL, and a brief introduction to each tool is accompanied by multiple computer lab experiences. The numerical methods covered are basic linear algebra and basic statistics, and traditional methods like Newton's method, Euler Integration, and trapezoidal integration. The book presents the reader with numerous examples and worked problems, and practice problems are included at the end of each chapter. Focuses on problems and methods unique to biomedical and chemical engineering; Presents modeling concepts drawn from chemical, mechanical, and materials engineering; Ancillary materials include lecture notes and slides and online videos that enable a flipped classroom or individual study.