Mathematical models, that depict the dynamics of a cancer cell population growing out of the human body (in vitro) in unconstrained microenvironment conditions, are considered in this thesis. Cancer cells in vitro grow and divide much faster than cancer cells in the human body, therefore, the effects of various cancer treatments applied to them can be identified much faster. These cell populations, when not exposed to any cancer treatment, exhibit exponential growth that we refer to as the balanced exponential growth (BEG) state. This observation has led to several effective methods of estimating parameters that thereafter are not required to be determined experimentally. We present derivation of the age-structured model and its theoretical...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
In biotechnology and biomedicine reliable models of cell proliferation kinetics need to capture the ...
Purpose: The phenotypic plasticity of cancer cells is recently becoming a cutting-edge research area...
Mathematical models, that depict the dynamics of a cancer cell population growing out of the human b...
This thesis may be divided into two related parts. The rst of which considers a population balance a...
Abstract. The growth of human cancers is characterised by long and variable cell cycle times that ar...
The goal of the paper is to compute efficiently solutions for model equations that have the potentia...
Cancer Stem Cells (CSC), a subset of cancer cells resembling normal stem cells with self-renewal and...
Cancer Stem Cells (CSC), a subset of cancer cells resembling normal stem cells with self-renewal and...
International audienceObjective: Modeling and analysis of cell population dynamics enhance our under...
Colorectal cancer is initiated in colonic crypts. A succession of genetic mutations or epigenetic c...
International audienceWe present and analyse in this article a mathematical question with a biologic...
We present a nonlinear model of the dynamics of a cell population divided in a proliferative and a q...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
In biotechnology and biomedicine reliable models of cell proliferation kinetics need to capture the ...
Purpose: The phenotypic plasticity of cancer cells is recently becoming a cutting-edge research area...
Mathematical models, that depict the dynamics of a cancer cell population growing out of the human b...
This thesis may be divided into two related parts. The rst of which considers a population balance a...
Abstract. The growth of human cancers is characterised by long and variable cell cycle times that ar...
The goal of the paper is to compute efficiently solutions for model equations that have the potentia...
Cancer Stem Cells (CSC), a subset of cancer cells resembling normal stem cells with self-renewal and...
Cancer Stem Cells (CSC), a subset of cancer cells resembling normal stem cells with self-renewal and...
International audienceObjective: Modeling and analysis of cell population dynamics enhance our under...
Colorectal cancer is initiated in colonic crypts. A succession of genetic mutations or epigenetic c...
International audienceWe present and analyse in this article a mathematical question with a biologic...
We present a nonlinear model of the dynamics of a cell population divided in a proliferative and a q...
Abstract: In the last few decades, the dynamics of tumor cells and their growths are presented via c...
In biotechnology and biomedicine reliable models of cell proliferation kinetics need to capture the ...
Purpose: The phenotypic plasticity of cancer cells is recently becoming a cutting-edge research area...