Mathematical cell models are effective tools to understand cellular physiological functions precisely. For detailed analysis of model dynamics in order to investigate how much each component affects cellular behaviour, mathematical approaches are essential. This article presents a numerical analysis technique, which is applicable to any complicated cell model formulated as a system of ordinary differential equations, to quantitatively evaluate contributions of respective model components to the model dynamics in the intact situation. The present technique employs a novel mathematical index for decomposed dynamics with respect to each differential variable, along with a concept named instantaneous equilibrium point, which represents the tren...
Abstract Background – The heart cell is a prime example of a system, in which numerous interconnecte...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
Understanding physiological mechanisms underlying the activity of the heart is of great medical impo...
Mathematical cell models are effective tools to understand cellular physiological functions precisel...
<div><p>Mathematical cell models are effective tools to understand cellular physiological functions ...
Mathematical cell models are effective tools to understand cellular physiological functions precisel...
AbstractWe have developed a detailed mathematical model for Ca2+ handling and ionic currents in the ...
Biophysically detailed cardiac cell models are based upon stiff ordinary differential equations desc...
This model was developed for the study of excitation-contraction coupling for single cardiac cell. T...
A global model of the cardiac muscle cell is formulated, integrating the electrical and chemical dyn...
A global model of the cardiac muscle cell is formulated, integrating the electrical and chemical dyn...
A global model of the cardiac muscle cell is formulated, integrating the electrical and chemical dyn...
A global model of the cardiac muscle cell is formulated, integrating the electrical and chemical dyn...
In this paper we introduce our findings which can lead to a mathematical method for simplifying cell...
In this paper we introduce our findings which can lead to a mathematical method for simplifying cell...
Abstract Background – The heart cell is a prime example of a system, in which numerous interconnecte...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
Understanding physiological mechanisms underlying the activity of the heart is of great medical impo...
Mathematical cell models are effective tools to understand cellular physiological functions precisel...
<div><p>Mathematical cell models are effective tools to understand cellular physiological functions ...
Mathematical cell models are effective tools to understand cellular physiological functions precisel...
AbstractWe have developed a detailed mathematical model for Ca2+ handling and ionic currents in the ...
Biophysically detailed cardiac cell models are based upon stiff ordinary differential equations desc...
This model was developed for the study of excitation-contraction coupling for single cardiac cell. T...
A global model of the cardiac muscle cell is formulated, integrating the electrical and chemical dyn...
A global model of the cardiac muscle cell is formulated, integrating the electrical and chemical dyn...
A global model of the cardiac muscle cell is formulated, integrating the electrical and chemical dyn...
A global model of the cardiac muscle cell is formulated, integrating the electrical and chemical dyn...
In this paper we introduce our findings which can lead to a mathematical method for simplifying cell...
In this paper we introduce our findings which can lead to a mathematical method for simplifying cell...
Abstract Background – The heart cell is a prime example of a system, in which numerous interconnecte...
Mathematical models of rabbit atrial and ventricular myocytes that are based on quantitative voltage...
Understanding physiological mechanisms underlying the activity of the heart is of great medical impo...