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Stochastic Processes in Cell Biology

ISBN-13: 9783319354941 / Angielski / Miękka / 2016 / 679 str.

Paul C. Bressloff
Stochastic Processes in Cell Biology Paul C. Bressloff 9783319354941 Springer - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

Stochastic Processes in Cell Biology

ISBN-13: 9783319354941 / Angielski / Miękka / 2016 / 679 str.

Paul C. Bressloff
cena 282,42
(netto: 268,97 VAT:  5%)

Najniższa cena z 30 dni: 269,85
Termin realizacji zamówienia:
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This book develops the theory of continuous and discrete stochastic processes within the context of cell biology. A wide range of biological topics are covered including normal and anomalous diffusion in complex cellular environments, stochastic ion channels and excitable systems, stochastic calcium signaling, molecular motors, intracellular transport, signal transduction, bacterial chemotaxis, robustness in gene networks, genetic switches and oscillators, cell polarization, polymerization, cellular length control, and branching processes. The book also provides a pedagogical introduction to the theory of stochastic process - Fokker Planck equations, stochastic differential equations, master equations and jump Markov processes, diffusion approximations and the system size expansion, first passage time problems, stochastic hybrid systems, reaction-diffusion equations, exclusion processes, WKB methods, martingales and branching processes, stochastic calculus, and numerical methods. This text is primarily aimed at graduate students and researchers working in mathematical biology and applied mathematicians interested in stochastic modeling. Applied probabilists and theoretical physicists should also find it of interest. It assumes no prior background in statistical physics and introduces concepts in stochastic processes via motivating biological applications. The book is highly illustrated and contains a large number of examples and exercises that further develop the models and ideas in the body of the text. It is based on a course that the author has taught at the University of Utah for many years.

Kategorie:
Nauka, Matematyka
Kategorie BISAC:
Mathematics > Matematyka stosowana
Mathematics > Prawdopodobieństwo i statystyka
Science > Biologia molekularna
Wydawca:
Springer
Seria wydawnicza:
Interdisciplinary Applied Mathematics
Język:
Angielski
ISBN-13:
9783319354941
Rok wydania:
2016
Wydanie:
Softcover Repri
Numer serii:
000011706
Ilość stron:
679
Waga:
0.95 kg
Wymiary:
23.39 x 15.6 x 3.56
Oprawa:
Miękka
Wolumenów:
01
Dodatkowe informacje:
Wydanie ilustrowane

"This nearly 700-page volume is an impressive account of a 'second wave' in the broad field known as mathematical biology. ... I say 'Bravo!' Bressloff's book is a superb resource for applied mathematicians interested in teaching and/or research in this field." (John Adam, Mathematical Reviews, February, 2016)

Introduction.- Diffusion in Cells: Random walks and Brownian Motion.- Stochastic Ion Channels.- Polymers and Molecular Motors.- Sensing the Environment: Adaptation and Amplification in Cells.- Stochastic Gene Expression and Regulatory Networks.- Transport Processes in Cells.- Self-Organization in Cells I: Active Processes.- Self-Organization in Cells II: Reaction-Diffusion Models.- The WKB Method and Large Deviation Theory.- Probability Theory and Martingales.

Paul Bressloff is a Professor of Mathematics in the Department of Mathematics at the University of Utah, where he is a faculty member of the Mathematical Biology Group and the Brain Institute.  He is also a Visiting Professor at the Mathematical Institute, University of Oxford and INRIA, Sophia-Antipolis.  Professor Bressloff's research interests lie in the areas of mathematical neuroscience and theoretical biophysics.

This book develops the theory of continuous and discrete stochastic processes within the context of cell biology.  A wide range of biological topics are covered including normal and anomalous diffusion in complex cellular environments, stochastic ion channels and excitable systems, stochastic calcium signaling, molecular motors, intracellular transport, signal transduction, bacterial chemotaxis, robustness in gene networks, genetic switches and oscillators, cell polarization, polymerization, cellular length control, and branching processes. The book also provides a pedagogical introduction to the theory of stochastic process – Fokker Planck equations, stochastic differential equations, master equations and jump Markov processes, diffusion approximations and the system size expansion, first passage time problems, stochastic hybrid systems, reaction-diffusion equations, exclusion processes, WKB methods, martingales and branching processes, stochastic calculus, and numerical methods.

 

This text is primarily aimed at graduate students and researchers working in mathematical biology and applied mathematicians interested in stochastic modeling.  Applied probabilists and theoretical physicists should also find it of interest. It assumes no prior background in statistical physics and introduces concepts in stochastic processes via motivating biological applications.  

 

The book is highly illustrated and contains a large number of examples and exercises that further develop the models and ideas in the body of the text. It is based on a course that the author has taught at the University of Utah for many years.



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