Growth in biological systems occurs as a consequence of cell proliferation fueled by a nutrient supply. In general, the nutrient gradient of the system will be nonconstant, resulting in biased cell proliferation. We develop a uniaxial discrete cellular automaton with biased cell proliferation using a probability distribution which reflects the nutrient gradient of the system. An explicit probability mass function for the displacement of any tracked cell under the cellular automaton model is derived and verified against averaged simulation results; this displacement distribution has applications in predicting cell trajectories and evolution of expected site occupancies.Alexander Lai De Oliveira, Benjamin J. Binde
A discrete model provides a useful framework for experimentalists to understand the interactions bet...
Moving fronts of cells are essential features of embryonic development, wound repair and cancer meta...
AbstractCancer invasion is the process of cells detaching from a primary tumor and infiltrating the ...
In this paper, the authors describe a computational model for the growth of multicellular tissues us...
In this paper, the authors describe a computational model for the growth of multicellular tissues us...
Cell migration and proliferation has been modelled in several works of the literature as a process s...
In this paper, two types of cellular automata are studied in order to describe the 2-dimensional fre...
Cell colonies of bacteria, tumor cells, and fungi, under nutrient limited growth conditions, exhibit...
Proliferation of individual cells is one of the hallmarks of living systems, and collectively the ce...
Cell colonies of bacteria, tumor cells, and fungi, under nutrient limited growth conditions, exhibit...
Cell colonies of bacteria, tumor cells, and fungi, under nutrient limited growth conditions, exhibit...
Cell colonies of bacteria, tumor cells, and fungi, under nutrient limited growth conditions, exhibit...
Cell colonies of bacteria, tumor cells, and fungi, under nutrient limited growth conditions, exhibit...
© 2013 Dr. Rebecca Hazel ChisholmMathematical biology is an emerging field. As the name suggests, t...
We report the development of a computational model for the growth of multicellular tissues based on ...
A discrete model provides a useful framework for experimentalists to understand the interactions bet...
Moving fronts of cells are essential features of embryonic development, wound repair and cancer meta...
AbstractCancer invasion is the process of cells detaching from a primary tumor and infiltrating the ...
In this paper, the authors describe a computational model for the growth of multicellular tissues us...
In this paper, the authors describe a computational model for the growth of multicellular tissues us...
Cell migration and proliferation has been modelled in several works of the literature as a process s...
In this paper, two types of cellular automata are studied in order to describe the 2-dimensional fre...
Cell colonies of bacteria, tumor cells, and fungi, under nutrient limited growth conditions, exhibit...
Proliferation of individual cells is one of the hallmarks of living systems, and collectively the ce...
Cell colonies of bacteria, tumor cells, and fungi, under nutrient limited growth conditions, exhibit...
Cell colonies of bacteria, tumor cells, and fungi, under nutrient limited growth conditions, exhibit...
Cell colonies of bacteria, tumor cells, and fungi, under nutrient limited growth conditions, exhibit...
Cell colonies of bacteria, tumor cells, and fungi, under nutrient limited growth conditions, exhibit...
© 2013 Dr. Rebecca Hazel ChisholmMathematical biology is an emerging field. As the name suggests, t...
We report the development of a computational model for the growth of multicellular tissues based on ...
A discrete model provides a useful framework for experimentalists to understand the interactions bet...
Moving fronts of cells are essential features of embryonic development, wound repair and cancer meta...
AbstractCancer invasion is the process of cells detaching from a primary tumor and infiltrating the ...