A mathematical model is proposed for describing the population dynamics of cellular clusters on the basis of systems of the first-order ordinary differential equations. The main requirement for the construction of model equations was to obtain a formal biological justification for their derivation, as well as proof of their correctness. In addition, for all the parameters involved in the model equations, the presence of biological meaning was guaranteed, as well as the possibility of evaluating them either during the experiment or by using models of intracellular biochemistry. In the desired model the intercellular exchange of a special signal molecules was chosen as the main mechanism for coordination of the tissue growth and new types sel...
In this paper we introduce a system of partial differential equations that is capable of modeling a ...
Biological systems are intrinsically heterogeneous and, consequently, their mathematical description...
During the life of a cellular organism, the individual cells grow, divide and die. Our aim in this ...
Mathematical modeling is a powerful technique to address key questions and paradigms in a variety of...
Mathematical modeling is a powerful technique to address key questions and paradigms in a variety of...
Biological systems are typically formed by different cell phenotypes, characterized by specific biop...
A model of a population is constructed by bringing together individual model organisms (cells) which...
© 2013 Dr. Rebecca Hazel ChisholmMathematical biology is an emerging field. As the name suggests, t...
International audienceThe paper is devoted to hybrid discrete-continuous models of cell populations ...
International audienceThe paper is devoted to hybrid discrete-continuous models of cell populations ...
This paper presents a method for modeling organs and tissues based on the equations of the functiona...
International audienceThe paper is devoted to hybrid discrete-continuous models of cell populations ...
This paper presents a method for modeling organs and tissues based on the equations of the functiona...
We consider a simple mathematical model of distribution of morphogens (signaling molecules responsib...
AbstractThe purpose of this paper is to discuss different types of models of cell population dynamic...
In this paper we introduce a system of partial differential equations that is capable of modeling a ...
Biological systems are intrinsically heterogeneous and, consequently, their mathematical description...
During the life of a cellular organism, the individual cells grow, divide and die. Our aim in this ...
Mathematical modeling is a powerful technique to address key questions and paradigms in a variety of...
Mathematical modeling is a powerful technique to address key questions and paradigms in a variety of...
Biological systems are typically formed by different cell phenotypes, characterized by specific biop...
A model of a population is constructed by bringing together individual model organisms (cells) which...
© 2013 Dr. Rebecca Hazel ChisholmMathematical biology is an emerging field. As the name suggests, t...
International audienceThe paper is devoted to hybrid discrete-continuous models of cell populations ...
International audienceThe paper is devoted to hybrid discrete-continuous models of cell populations ...
This paper presents a method for modeling organs and tissues based on the equations of the functiona...
International audienceThe paper is devoted to hybrid discrete-continuous models of cell populations ...
This paper presents a method for modeling organs and tissues based on the equations of the functiona...
We consider a simple mathematical model of distribution of morphogens (signaling molecules responsib...
AbstractThe purpose of this paper is to discuss different types of models of cell population dynamic...
In this paper we introduce a system of partial differential equations that is capable of modeling a ...
Biological systems are intrinsically heterogeneous and, consequently, their mathematical description...
During the life of a cellular organism, the individual cells grow, divide and die. Our aim in this ...