Robustness is an essential feature of biological systems, and any mathematical model that describes such a system should reflect this feature. Especially, persistence of oscillatory behavior is an important issue. A benchmark model for this phenomenon is the Laub-Loomis model, a nonlinear model for cAMP oscillations in Dictyostelium discoideum. This model captures the most important features of biomolecular networks oscillating at constant frequencies. Nevertheless, the robustness of its oscillatory behavior is not yet fully understood. Given a system that exhibits oscillating behavior for some set of parameters, the central question of robustness is how far the parameters may be changed, such that the qualitative behavior does not change. ...
We propose an approach to falsification of oscillation properties of parametric biological models, b...
© 2017 Society for Industrial and Applied Mathematics. We analyze the governing partial differential...
Bistability is a key system-level dynamical property to understand the basic mechanisms underpinning...
Robustness is an essential feature of biological systems, and any mathematical model that describes ...
Biological systems which have been experimentally verified to be robust to significant changes in th...
We develop a tool based on bifurcation analysis for parameter-robustness analysis for a class of osc...
Abstract Background Quantifying the robustness of bio...
Parameter perturbations in dynamical models of biochemical networks affect the qualitative dynamical...
We develop a tool based on bifurcation analysis for parameter-robustness analysis for a class of osc...
Robustness of cellular functions is a key property of living organisms. Modelling and analysis of th...
Abstract:- This paper presents the investigation of oscillations and nonlinear dynamics of models of...
We develop a tool based on bifurcation analysis for parameter-robustness analysis for a class of osc...
We develop a tool based on bifurcation analysis for parameter-robustness analysis for a class of osc...
One of the main obstacles in systems biology is complexity, a feature that is inherent to living sys...
Abstract: Model reduction methods usually focus on the error performance analysis; however, in pres...
We propose an approach to falsification of oscillation properties of parametric biological models, b...
© 2017 Society for Industrial and Applied Mathematics. We analyze the governing partial differential...
Bistability is a key system-level dynamical property to understand the basic mechanisms underpinning...
Robustness is an essential feature of biological systems, and any mathematical model that describes ...
Biological systems which have been experimentally verified to be robust to significant changes in th...
We develop a tool based on bifurcation analysis for parameter-robustness analysis for a class of osc...
Abstract Background Quantifying the robustness of bio...
Parameter perturbations in dynamical models of biochemical networks affect the qualitative dynamical...
We develop a tool based on bifurcation analysis for parameter-robustness analysis for a class of osc...
Robustness of cellular functions is a key property of living organisms. Modelling and analysis of th...
Abstract:- This paper presents the investigation of oscillations and nonlinear dynamics of models of...
We develop a tool based on bifurcation analysis for parameter-robustness analysis for a class of osc...
We develop a tool based on bifurcation analysis for parameter-robustness analysis for a class of osc...
One of the main obstacles in systems biology is complexity, a feature that is inherent to living sys...
Abstract: Model reduction methods usually focus on the error performance analysis; however, in pres...
We propose an approach to falsification of oscillation properties of parametric biological models, b...
© 2017 Society for Industrial and Applied Mathematics. We analyze the governing partial differential...
Bistability is a key system-level dynamical property to understand the basic mechanisms underpinning...