Methods of Small Parameter in Mathematical Biology

Methods of Small Parameter in Mathematical Biology
Author :
Publisher : Springer Science & Business
Total Pages : 295
Release :
ISBN-10 : 9783319051406
ISBN-13 : 3319051407
Rating : 4/5 (06 Downloads)

Synopsis Methods of Small Parameter in Mathematical Biology by : Jacek Banasiak

This monograph presents new tools for modeling multiscale biological processes. Natural processes are usually driven by mechanisms widely differing from each other in the time or space scale at which they operate and thus should be described by appropriate multiscale models. However, looking at all such scales simultaneously is often infeasible, costly, and provides information that is redundant for a particular application. Hence, there has been a growing interest in providing a more focused description of multiscale processes by aggregating variables in a way that is relevant to the purpose at hand and preserves the salient features of the dynamics. Many ad hoc methods have been devised, and the aim of this book is to present a systematic way of deriving the so-called limit equations for such aggregated variables and ensuring that the coefficients of these equations encapsulate the relevant information from the discarded levels of description. Since any approximation is only valid if an estimate of the incurred error is available, the tools the authors describe allow for proving that the solutions to the original multiscale family of equations converge to the solution of the limit equation if the relevant parameter converges to its critical value. The chapters are arranged according to the mathematical complexity of the analysis, from systems of ordinary linear differential equations, through nonlinear ordinary differential equations, to linear and nonlinear partial differential equations. Many chapters begin with a survey of mathematical techniques needed for the analysis. All problems discussed in this book belong to the class of singularly perturbed problems; that is, problems in which the structure of the limit equation is significantly different from that of the multiscale model. Such problems appear in all areas of science and can be attacked using many techniques. Methods of Small Parameter in Mathematical Biology will appeal to senior undergraduate and graduate students in applied and biomathematics, as well as researchers specializing in differential equations and asymptotic analysis.

Mathematical Modeling in Biology

Mathematical Modeling in Biology
Author :
Publisher : CRC Press
Total Pages : 339
Release :
ISBN-10 : 9781000806090
ISBN-13 : 100080609X
Rating : 4/5 (90 Downloads)

Synopsis Mathematical Modeling in Biology by : Shandelle M. Henson

Features Minimal pre-requisites beyond a solid background in calculus, such as a calculus I course. Suitable for upper division mathematics and sciences students and graduate-level biology students. Provides sample MATLAB codes and instruction in Appendices.

A Course in Mathematical Biology

A Course in Mathematical Biology
Author :
Publisher : Cambridge University Press
Total Pages : 330
Release :
ISBN-10 : 0898716128
ISBN-13 : 9780898716122
Rating : 4/5 (28 Downloads)

Synopsis A Course in Mathematical Biology by : Gerda de Vries

"Divided into three parts, the book covers basic analytical modeling techniques and model validation methods; introduces computational tools used in the modeling of biological problems; and provides a source of open-ended problems from epidemiology; ecology, and physiology."--Page 4 de la couverture.

An Introduction to Undergraduate Research in Computational and Mathematical Biology

An Introduction to Undergraduate Research in Computational and Mathematical Biology
Author :
Publisher : Springer Nature
Total Pages : 479
Release :
ISBN-10 : 9783030336455
ISBN-13 : 303033645X
Rating : 4/5 (55 Downloads)

Synopsis An Introduction to Undergraduate Research in Computational and Mathematical Biology by : Hannah Callender Highlander

Speaking directly to the growing importance of research experience in undergraduate mathematics programs, this volume offers suggestions for undergraduate-appropriate research projects in mathematical and computational biology for students and their faculty mentors. The aim of each chapter is twofold: for faculty, to alleviate the challenges of identifying accessible topics and advising students through the research process; for students, to provide sufficient background, additional references, and context to excite students in these areas and to enable them to successfully undertake these problems in their research. Some of the topics discussed include: • Oscillatory behaviors present in real-world applications, from seasonal outbreaks of childhood diseases to action potentials in neurons • Simulating bacterial growth, competition, and resistance with agent-based models and laboratory experiments • Network structure and the dynamics of biological systems • Using neural networks to identify bird species from birdsong samples • Modeling fluid flow induced by the motion of pulmonary cilia Aimed at undergraduate mathematics faculty and advanced undergraduate students, this unique guide will be a valuable resource for generating fruitful research collaborations between students and faculty.

Mathematical Methods of Population Biology

Mathematical Methods of Population Biology
Author :
Publisher : Cambridge University Press
Total Pages : 162
Release :
ISBN-10 : 052128256X
ISBN-13 : 9780521282567
Rating : 4/5 (6X Downloads)

Synopsis Mathematical Methods of Population Biology by : Frank Charles Hoppensteadt

An introduction to mathematical methods used in the study of population phenomena including models of total population and population age structure, models of random population events presented in terms of Markov chains, and methods used to uncover qualitative behavior of more complicated difference equations.

Mathematical Techniques for Biology and Medicine

Mathematical Techniques for Biology and Medicine
Author :
Publisher : Courier Corporation
Total Pages : 324
Release :
ISBN-10 : 9780486780795
ISBN-13 : 0486780791
Rating : 4/5 (95 Downloads)

Synopsis Mathematical Techniques for Biology and Medicine by : William Simon

Suitable for both graduate and undergraduate courses, this text recalls basic concepts of calculus and shows how problems can be formulated in terms of differential equations. Fully worked-out solutions to selected problems. Fourth edition.

Mathematical Methods in Biology

Mathematical Methods in Biology
Author :
Publisher : John Wiley & Sons
Total Pages : 437
Release :
ISBN-10 : 9780470525876
ISBN-13 : 0470525878
Rating : 4/5 (76 Downloads)

Synopsis Mathematical Methods in Biology by : J. David Logan

A one-of-a-kind guide to using deterministic and probabilistic methods for solving problems in the biological sciences Highlighting the growing relevance of quantitative techniques in scientific research, Mathematical Methods in Biology provides an accessible presentation of the broad range of important mathematical methods for solving problems in the biological sciences. The book reveals the growing connections between mathematics and biology through clear explanations and specific, interesting problems from areas such as population dynamics, foraging theory, and life history theory. The authors begin with an introduction and review of mathematical tools that are employed in subsequent chapters, including biological modeling, calculus, differential equations, dimensionless variables, and descriptive statistics. The following chapters examine standard discrete and continuous models using matrix algebra as well as difference and differential equations. Finally, the book outlines probability, statistics, and stochastic methods as well as material on bootstrapping and stochastic differential equations, which is a unique approach that is not offered in other literature on the topic. In order to demonstrate the application of mathematical methods to the biological sciences, the authors provide focused examples from the field of theoretical ecology, which serve as an accessible context for study while also demonstrating mathematical skills that are applicable to many other areas in the life sciences. The book's algorithms are illustrated using MATLAB®, but can also be replicated using other software packages, including R, Mathematica®, and Maple; however, the text does not require any single computer algebra package. Each chapter contains numerous exercises and problems that range in difficulty, from the basic to more challenging, to assist readers with building their problem-solving skills. Selected solutions are included at the back of the book, and a related Web site features supplemental material for further study. Extensively class-tested to ensure an easy-to-follow format, Mathematical Methods in Biology is an excellent book for mathematics and biology courses at the upper-undergraduate and graduate levels. It also serves as a valuable reference for researchers and professionals working in the fields of biology, ecology, and biomathematics.

Introduction to Mathematical Biology

Introduction to Mathematical Biology
Author :
Publisher : Springer
Total Pages : 174
Release :
ISBN-10 : 9783319296388
ISBN-13 : 3319296388
Rating : 4/5 (88 Downloads)

Synopsis Introduction to Mathematical Biology by : Ching Shan Chou

This book is based on a one semester course that the authors have been teaching for several years, and includes two sets of case studies. The first includes chemostat models, predator-prey interaction, competition among species, the spread of infectious diseases, and oscillations arising from bifurcations. In developing these topics, readers will also be introduced to the basic theory of ordinary differential equations, and how to work with MATLAB without having any prior programming experience. The second set of case studies were adapted from recent and current research papers to the level of the students. Topics have been selected based on public health interest. This includes the risk of atherosclerosis associated with high cholesterol levels, cancer and immune interactions, cancer therapy, and tuberculosis. Readers will experience how mathematical models and their numerical simulations can provide explanations that guide biological and biomedical research. Considered to be the undergraduate companion to the more advanced book "Mathematical Modeling of Biological Processes" (A. Friedman, C.-Y. Kao, Springer – 2014), this book is geared towards undergraduate students with little background in mathematics and no biological background.

A Primer in Mathematical Models in Biology

A Primer in Mathematical Models in Biology
Author :
Publisher : SIAM
Total Pages : 435
Release :
ISBN-10 : 9781611972504
ISBN-13 : 1611972507
Rating : 4/5 (04 Downloads)

Synopsis A Primer in Mathematical Models in Biology by : Lee A. Segel

This textbook introduces differential equations, biological applications, and simulations and emphasizes molecular events (biochemistry and enzyme kinetics), excitable systems (neural signals), and small protein and genetic circuits. A Primer on Mathematical Models in Biology will appeal to readers because it grew out of a course that the popular and highly respected applied mathematician Lee Segel taught at the Weizmann Institute and it represents his unique perspective; combines clear and useful mathematical methods with applications that illustrate the power of such tools; and includes many exercises in reasoning, modeling, and simulations.

Mathematical Biology

Mathematical Biology
Author :
Publisher : Springer Science & Business Media
Total Pages : 551
Release :
ISBN-10 : 9780387224374
ISBN-13 : 0387224378
Rating : 4/5 (74 Downloads)

Synopsis Mathematical Biology by : James D. Murray

Mathematical Biology is a richly illustrated textbook in an exciting and fast growing field. Providing an in-depth look at the practical use of math modeling, it features exercises throughout that are drawn from a variety of bioscientific disciplines - population biology, developmental biology, physiology, epidemiology, and evolution, among others. It maintains a consistent level throughout so that graduate students can use it to gain a foothold into this dynamic research area.