Mathematical Modeling and Validation in Physiology

Mathematical Modeling and Validation in Physiology
Author :
Publisher : Springer
Total Pages : 270
Release :
ISBN-10 : 9783642328824
ISBN-13 : 3642328822
Rating : 4/5 (24 Downloads)

Synopsis Mathematical Modeling and Validation in Physiology by : Jerry J. Batzel

This volume synthesizes theoretical and practical aspects of both the mathematical and life science viewpoints needed for modeling of the cardiovascular-respiratory system specifically and physiological systems generally. Theoretical points include model design, model complexity and validation in the light of available data, as well as control theory approaches to feedback delay and Kalman filter applications to parameter identification. State of the art approaches using parameter sensitivity are discussed for enhancing model identifiability through joint analysis of model structure and data. Practical examples illustrate model development at various levels of complexity based on given physiological information. The sensitivity-based approaches for examining model identifiability are illustrated by means of specific modeling examples. The themes presented address the current problem of patient-specific model adaptation in the clinical setting, where data is typically limited.

Introduction to Modeling in Physiology and Medicine

Introduction to Modeling in Physiology and Medicine
Author :
Publisher : Elsevier
Total Pages : 337
Release :
ISBN-10 : 9780080559988
ISBN-13 : 0080559980
Rating : 4/5 (88 Downloads)

Synopsis Introduction to Modeling in Physiology and Medicine by : Claudio Cobelli

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

Signals and Systems in Biomedical Engineering

Signals and Systems in Biomedical Engineering
Author :
Publisher : Springer Science & Business Media
Total Pages : 348
Release :
ISBN-10 : 9781461542995
ISBN-13 : 1461542995
Rating : 4/5 (95 Downloads)

Synopsis Signals and Systems in Biomedical Engineering by : Suresh R. Devasahayam

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.

Computational Modeling of Biological Systems

Computational Modeling of Biological Systems
Author :
Publisher : Springer Science & Business Media
Total Pages : 360
Release :
ISBN-10 : 9781461421450
ISBN-13 : 1461421454
Rating : 4/5 (50 Downloads)

Synopsis Computational Modeling of Biological Systems by : Nikolay V Dokholyan

Computational modeling is emerging as a powerful new approach to study and manipulate biological systems. Multiple methods have been developed to model, visualize, and rationally alter systems at various length scales, starting from molecular modeling and design at atomic resolution to cellular pathways modeling and analysis. Higher time and length scale processes, such as molecular evolution, have also greatly benefited from new breeds of computational approaches. This book provides an overview of the established computational methods used for modeling biologically and medically relevant systems.

Applied Mathematical Models in Human Physiology

Applied Mathematical Models in Human Physiology
Author :
Publisher : SIAM
Total Pages : 311
Release :
ISBN-10 : 0898718287
ISBN-13 : 9780898718287
Rating : 4/5 (87 Downloads)

Synopsis Applied Mathematical Models in Human Physiology by : Johnny T. Ottesen

This book introduces mathematicians to real applications from physiology. Using mathematics to analyze physiological systems, the authors focus on models reflecting current research in cardiovascular and pulmonary physiology. In particular, they present models describing blood flow in the heart and the cardiovascular system, as well as the transport of oxygen and carbon dioxide through the respiratory system and a model for baroreceptor regulation.

Nonlinear Dynamic Modeling of Physiological Systems

Nonlinear Dynamic Modeling of Physiological Systems
Author :
Publisher : John Wiley & Sons
Total Pages : 564
Release :
ISBN-10 : 0471469602
ISBN-13 : 9780471469605
Rating : 4/5 (02 Downloads)

Synopsis Nonlinear Dynamic Modeling of Physiological Systems by : Professor Vasilis Z. Marmarelis

The study of nonlinearities in physiology has been hindered by the lack of effective ways to obtain nonlinear dynamic models from stimulus-response data in a practical context. A considerable body of knowledge has accumulated over the last thirty years in this area of research. This book summarizes that progress, and details the most recent methodologies that offer practical solutions to this daunting problem. Implementation and application are discussed, and examples are provided using both synthetic and actual experimental data. This essential study of nonlinearities in physiology apprises researchers and students of the latest findings and techniques in the field.

Modelling Methodology for Physiology and Medicine

Modelling Methodology for Physiology and Medicine
Author :
Publisher : Elsevier
Total Pages : 437
Release :
ISBN-10 : 9780080511900
ISBN-13 : 0080511902
Rating : 4/5 (00 Downloads)

Synopsis Modelling Methodology for Physiology and Medicine by : Ewart Carson

Modelling Methodology for Physiology and Medicine offers a unique approach and an unprecedented range of coverage of the state-of-the-art, advanced modelling methodology that is widely applicable to physiology and medicine. The book opens with a clear and integrated treatment of advanced methodology for developing mathematical models of physiology and medical systems. Readers are then shown how to apply this methodology beneficially to real-world problems in physiology and medicine, such as circulation and respiration. - Builds upon and enhances the readers existing knowledge of modelling methodology and practice - Editors are internationally renowned leaders in their respective fields

Modeling and Simulation in Medicine and the Life Sciences

Modeling and Simulation in Medicine and the Life Sciences
Author :
Publisher : Springer Science & Business Media
Total Pages : 362
Release :
ISBN-10 : 9780387215716
ISBN-13 : 0387215719
Rating : 4/5 (16 Downloads)

Synopsis Modeling and Simulation in Medicine and the Life Sciences by : Frank C. Hoppensteadt

The result of lectures given by the authors at New York University, the University of Utah, and Michigan State University, the material is written for students who have had only one term of calculus, but it contains material that can be used in modeling courses in applied mathematics at all levels through early graduate courses. Numerous exercises are given as well as solutions to selected exercises, so as to lead readers to discover interesting extensions of that material. Throughout, illustrations depict physiological processes, population biology phenomena, corresponding models, and the results of computer simulations. Topics covered range from population phenomena to demographics, genetics, epidemics and dispersal; in physiological processes, including the circulation, gas exchange in the lungs, control of cell volume, the renal counter-current multiplier mechanism, and muscle mechanics; to mechanisms of neural control. Each chapter is graded in difficulty, so a reading of the first parts of each provides an elementary introduction to the processes and their models.

Mathematics in Medicine and the Life Sciences

Mathematics in Medicine and the Life Sciences
Author :
Publisher : Springer Science & Business Media
Total Pages : 257
Release :
ISBN-10 : 9781475741315
ISBN-13 : 1475741316
Rating : 4/5 (15 Downloads)

Synopsis Mathematics in Medicine and the Life Sciences by : Frank C. Hoppensteadt

The aim of this book is to introduce the subject of mathematical modeling in the life sciences. It is intended for students of mathematics, the physical sciences, and engineering who are curious about biology. Additionally, it will be useful to students of the life sciences and medicine who are unsatisfied with mere description and who seek an understanding of biological mechanism and dynamics through the use of mathematics. The book will be particularly useful to premedical students, because it will introduce them not only to a collection of mathematical methods but also to an assortment of phenomena involving genetics, epidemics, and the physiology of the heart, lung, and kidney. Because of its introductory character, mathematical prerequisites are kept to a minimum; they involve only what is usually covered in the first semester of a calculus sequence. The authors have drawn on their extensive experience as modelers to select examples which are simple enough to be understood at this elementary level and yet realistic enough to capture the essence of significant biological phenomena drawn from the areas of population dynamics and physiology. Because the models presented are realistic, the book can serve not only as an introduction to mathematical methods but also as a mathematical introduction to the biological material itself. For the student, who enjoys mathematics, such an introduction will be far more stimulating and satisfying than the purely descriptive approach that is traditional in the biological sciences.