Mitosis inside a tumour can be prohibited for different reasons, such as overcrowding or physical pressure. At the same time, the rate of successful mitoses inside a tumour can hardly be measured in vivo or vitro, but is easily modeled in silico. In this paper we present a study of the influence of mitoses rate on the growth dynamics of a cellular automata model for growth
The Glazier–Graner–Hogeweg (GGH) model is a cellular automata framework for representing the time ev...
Abstract. We propose a descriptive 2D Hybrid Cellular Automaton model that simulates the growth beha...
Proliferation of mammalian cells, even under conditions of unlimited growth, presents a complex prob...
AbstractMitosis inside a tumour can be prohibited for different reasons, such as overcrowding or phy...
Tumor growth is a complex process that requires mathematical modeling approaches for studying real-l...
In this paper, two types of cellular automata are studied in order to describe the 2-dimensional fre...
The importance of in-vitro carcinogenesis tests is growing, either for health risk assessments or fo...
The neoplastic diseases are responsible for 12 % of deaths around the world. The mathematical and co...
Hypoxia and the pH level of the tumor microenvironment have a great impact on the treatment of tumor...
In this paper we present three dimensional cellular automata models for tumour growth, with a focus ...
International audienceThe tumour microenvironment is known to play an important role in determining ...
Experimental evidence suggests that a tumor\u27s environment may be critical to designing successful...
Texto completo: acesso restrito. p. 1303-1314Tumor growth has long been a target of investigation wi...
In this paper, the authors describe a computational model for the growth of multicellular tissues us...
The <i>Glazier–Graner–Hogeweg</i> (GGH) model is a cellular automata framework for representing the ...
The Glazier–Graner–Hogeweg (GGH) model is a cellular automata framework for representing the time ev...
Abstract. We propose a descriptive 2D Hybrid Cellular Automaton model that simulates the growth beha...
Proliferation of mammalian cells, even under conditions of unlimited growth, presents a complex prob...
AbstractMitosis inside a tumour can be prohibited for different reasons, such as overcrowding or phy...
Tumor growth is a complex process that requires mathematical modeling approaches for studying real-l...
In this paper, two types of cellular automata are studied in order to describe the 2-dimensional fre...
The importance of in-vitro carcinogenesis tests is growing, either for health risk assessments or fo...
The neoplastic diseases are responsible for 12 % of deaths around the world. The mathematical and co...
Hypoxia and the pH level of the tumor microenvironment have a great impact on the treatment of tumor...
In this paper we present three dimensional cellular automata models for tumour growth, with a focus ...
International audienceThe tumour microenvironment is known to play an important role in determining ...
Experimental evidence suggests that a tumor\u27s environment may be critical to designing successful...
Texto completo: acesso restrito. p. 1303-1314Tumor growth has long been a target of investigation wi...
In this paper, the authors describe a computational model for the growth of multicellular tissues us...
The <i>Glazier–Graner–Hogeweg</i> (GGH) model is a cellular automata framework for representing the ...
The Glazier–Graner–Hogeweg (GGH) model is a cellular automata framework for representing the time ev...
Abstract. We propose a descriptive 2D Hybrid Cellular Automaton model that simulates the growth beha...
Proliferation of mammalian cells, even under conditions of unlimited growth, presents a complex prob...