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Titlebook: Stochastic Processes, Multiscale Modeling, and Numerical Methods for Computational Cellular Biology; David Holcman Book 2017 Springer Inte

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书目名称Stochastic Processes, Multiscale Modeling, and Numerical Methods for Computational Cellular Biology
编辑David Holcman
视频video
概述Provides a collection of organized reviews on fundamental topics, not necessarily covered by classical text books, due to the interdisciplinary nature of the subject.Features new mathematical-physics
图书封面Titlebook: Stochastic Processes, Multiscale Modeling, and Numerical Methods for Computational Cellular Biology;  David Holcman Book 2017 Springer Inte
描述.This book focuses on the modeling and mathematical analysis of stochastic dynamical systems along with their simulations. The collected chapters will review fundamental and current topics and approaches to dynamical systems in cellular biology..This text aims to develop improved mathematical and computational methods with which to study biological processes. At the scale of a single cell, stochasticity becomes important due to low copy numbers of biological molecules, such as mRNA and proteins that take part in biochemical reactions driving cellular processes. When trying to describe such biological processes, the traditional deterministic models are often inadequate, precisely because of these low copy numbers. This book presents stochastic models, which are necessary to account for small particle numbers and extrinsic noise sources. The complexity of these models depend upon whether the biochemical reactions are diffusion-limited or reaction-limited. In the former case, oneneeds to adopt the framework of stochastic reaction-diffusion models, while in the latter, one can describe the processes by adopting the framework of Markov jump processes and stochastic differential equation
出版日期Book 2017
关键词Chemical master equation; Stochastic integration; Numerical methods; Modeling cell biology; Stochastic C
版次1
doihttps://doi.org/10.1007/978-3-319-62627-7
isbn_softcover978-3-319-87358-9
isbn_ebook978-3-319-62627-7
copyrightSpringer International Publishing AG 2017
The information of publication is updating

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Stefan Engblom,Andreas Hellander,Per Lötstedtid in reducing the loss of lives in the event of a disaster. HF (high frequency) radar, an IoT-enabled ocean surface current monitoring system, implementation is one of the first attempts towards achieving this goal. Although HF systems can monitor sea current patterns in terms of speed and directio
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del. The former is based on small displacements modeling of points using 6x6 transformation matrices of open kinematic chains in robotics. The latter models the boundaries of 3-D tolerance zones resulting from a feature’s small displacements using a torsor representation with constraints. The propos
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