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Diffusivity Estimation for Activator–Inhibitor Models: Theory and Application to Intracellular Dynamics of the Actin Cytoskeleton
by
Flemming, Sven
, Alonso, Sergio
, Beta, Carsten
, Pasemann, Gregor
, Stannat, Wilhelm
in
Analysis
/ Approximation
/ Classical Mechanics
/ Differential equations
/ Diffusivity
/ Economic Theory/Quantitative Economics/Mathematical Methods
/ Inhibitors
/ Mathematical and Computational Engineering
/ Mathematical and Computational Physics
/ Mathematics
/ Mathematics and Statistics
/ Parameter estimation
/ Partial differential equations
/ Signaling
/ Statistical inference
/ Theoretical
2021
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Diffusivity Estimation for Activator–Inhibitor Models: Theory and Application to Intracellular Dynamics of the Actin Cytoskeleton
by
Flemming, Sven
, Alonso, Sergio
, Beta, Carsten
, Pasemann, Gregor
, Stannat, Wilhelm
in
Analysis
/ Approximation
/ Classical Mechanics
/ Differential equations
/ Diffusivity
/ Economic Theory/Quantitative Economics/Mathematical Methods
/ Inhibitors
/ Mathematical and Computational Engineering
/ Mathematical and Computational Physics
/ Mathematics
/ Mathematics and Statistics
/ Parameter estimation
/ Partial differential equations
/ Signaling
/ Statistical inference
/ Theoretical
2021
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Diffusivity Estimation for Activator–Inhibitor Models: Theory and Application to Intracellular Dynamics of the Actin Cytoskeleton
by
Flemming, Sven
, Alonso, Sergio
, Beta, Carsten
, Pasemann, Gregor
, Stannat, Wilhelm
in
Analysis
/ Approximation
/ Classical Mechanics
/ Differential equations
/ Diffusivity
/ Economic Theory/Quantitative Economics/Mathematical Methods
/ Inhibitors
/ Mathematical and Computational Engineering
/ Mathematical and Computational Physics
/ Mathematics
/ Mathematics and Statistics
/ Parameter estimation
/ Partial differential equations
/ Signaling
/ Statistical inference
/ Theoretical
2021
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Diffusivity Estimation for Activator–Inhibitor Models: Theory and Application to Intracellular Dynamics of the Actin Cytoskeleton
Journal Article
Diffusivity Estimation for Activator–Inhibitor Models: Theory and Application to Intracellular Dynamics of the Actin Cytoskeleton
2021
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Overview
A theory for diffusivity estimation for spatially extended activator–inhibitor dynamics modeling the evolution of intracellular signaling networks is developed in the mathematical framework of stochastic reaction–diffusion systems. In order to account for model uncertainties, we extend the results for parameter estimation for semilinear stochastic partial differential equations, as developed in Pasemann and Stannat (Electron J Stat 14(1):547–579, 2020), to the problem of joint estimation of diffusivity and parametrized reaction terms. Our theoretical findings are applied to the estimation of effective diffusivity of signaling components contributing to intracellular dynamics of the actin cytoskeleton in the model organism
Dictyostelium discoideum
.
Publisher
Springer US,Springer Nature B.V
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