de
en
Schliessen
Detailsuche
Bibliotheken
Projekt
Impressum
Datenschutz
zum Inhalt
Detailsuche
Schnellsuche:
OK
Ergebnisliste
Titel
Titel
Inhalt
Inhalt
Seite
Seite
Im Dokument suchen
Möller, Mark: A hybrid algorithm for the simulation of biochemical reactions and diffusion. 2006
Inhalt
Summary
Preamble
Table of Contents
List of Tables
List of Figures
List of Abbreviations
List of Notations
1 Introduction
2 State of the Art
2.1 Meaning of Chemical Reactions & Diffusion for Biological Systems
2.1.1 Chemical Reactions
2.1.2 Diffusion
2.2 From Systems Biology to Mathematical Modeling
2.3 Modeling
2.3.1 Deterministic Versus Stochastic Modeling
2.4 Existing Methods
2.4.1 Methods for Simulating Diffusion
2.4.2 Reaction Algorithms
2.5 Existing Implementations
3 COAST for Reaction and Diffusion
3.1 Concept of COAST
3.2 Derivation of the Fundamentals
3.2.1 Methods
3.2.2 Length of the Time Steps
3.3 The Reaction Algorithm
3.3.1 Next Evaluation Time T
3.3.2 Evaluation of Reaction Channels
3.3.3 Final Update
3.4 Extending COAST to Diffusion
3.4.1 Problems and Approaches
3.4.2 Outline
3.5 The Discrete Diffusion Model
3.6 The Values of the Discretization Parameters
3.6.1 First Condition: Approximation of Continuous Distributions
3.6.2 Second Condition: Approximation of Moments
3.6.3 Third Condition: Positive Probabilities
3.6.4 Fourth Condition: Small Changes of Particle Numbers
3.7 Summary of Formulas for
3.8 Calculation of Transitions
3.9 The Algorithm
3.9.1 Overview
3.9.2 Subroutines
3.10 The Error Parameter alpha
4 Test Simulations
4.1 Test Simulations Using COAST
4.1.1 Basic Systems
4.1.2 The Oregonator
4.1.3 Circadian Clock
4.1.4 Michaelis-Menten Kinetics
4.2 Test Simulations Regarding COAST's Extension to Diffusion
4.2.1 Basic Systems
4.2.2 Kramer's Transition State Theory
4.2.3 Linear Diffusion
4.3 General Technical Considerations
4.3.1 Run time analyses
4.3.2 Used Software
5 Discussion and Conclusion
5.1 Reflecting on COAST
5.2 The Adoption of COAST to Diffusion
5.3 Combining Reaction and Diffusion Algorithms
5.4 Final Conclusions
Bibliography
A Numerical solution of chemical differential equations
A.1 Bimolecular Reaction; One Specie
A.2 Unimolecular Reaction
A.3 Bimolecular Reaction; Two Species (Part 1)
A.4 Bimolecular Reaction; Two Species (Part 2)
A.5 Bimolecular Reaction; Two Species (Part 3)
B Belousov-Zhabotinsky Reaction
B.1 The Composition
B.2 Reaction System
B.3 Chemical Structures of Ferroin and Brome Malonic Acid
C Additional Information
C.1 URL-List of Cellular Simulators