An advanced pantograph-type partial differential equation, supplemented with initial and boundary conditions, arises in a model of asymmetric cell division. Methods for solving such problems are limited owing to functional (nonlocal) terms. The separation of variables entails an eigenvalue problem that involves a nonlocal ordinary differential equation. We discuss plausible eigenvalues that may yield nontrivial solutions to the problem for certain choices of growth and division rates of cells. We also consider the asymmetric division of cells with linear growth rate which corresponds to "exponential growth” and exponential rate of cell division, and show that the solution to the problem is a certain Dirichlet series. The distribution of the...
We interpret a boundary-value problem arising in a cell growth model as a singular Sturm–Liouville...
We interpret a boundary-value problem arising in a cell growth model as a singular Sturm–Liouville...
We interpret a boundary-value problem arising in a cell growth model as a singular Sturm–Liouville...
A cell growth model for a size-structured cell population with a stochastic growth rate for size and...
We present a model that describes growth, division and death of cells structured by size. Here, siz...
Aspects of the asymptotic behaviour of cell-growth models described by partial differential equation...
In a previous paper, we proposed a model in which the volume growth rate and probability of division...
Simple models for size structured cell populations undergoing growth and division produce a class of...
Simple models for size structured cell populations undergoing growth and division produce a class of...
Simple models for size structured cell populations undergoing growth and division produce a class of...
Simple models for size structured cell populations undergoing growth and division produce a class of...
Simple models for size structured cell populations undergoing growth and division producea class of ...
We consider an initial–boundary value problem that involves a partial differential equation with a...
International audienceReceived (Day Month Year) Revised (Day Month Year) Communicated by (xxxxxxxxxx...
International audienceReceived (Day Month Year) Revised (Day Month Year) Communicated by (xxxxxxxxxx...
We interpret a boundary-value problem arising in a cell growth model as a singular Sturm–Liouville...
We interpret a boundary-value problem arising in a cell growth model as a singular Sturm–Liouville...
We interpret a boundary-value problem arising in a cell growth model as a singular Sturm–Liouville...
A cell growth model for a size-structured cell population with a stochastic growth rate for size and...
We present a model that describes growth, division and death of cells structured by size. Here, siz...
Aspects of the asymptotic behaviour of cell-growth models described by partial differential equation...
In a previous paper, we proposed a model in which the volume growth rate and probability of division...
Simple models for size structured cell populations undergoing growth and division produce a class of...
Simple models for size structured cell populations undergoing growth and division produce a class of...
Simple models for size structured cell populations undergoing growth and division produce a class of...
Simple models for size structured cell populations undergoing growth and division produce a class of...
Simple models for size structured cell populations undergoing growth and division producea class of ...
We consider an initial–boundary value problem that involves a partial differential equation with a...
International audienceReceived (Day Month Year) Revised (Day Month Year) Communicated by (xxxxxxxxxx...
International audienceReceived (Day Month Year) Revised (Day Month Year) Communicated by (xxxxxxxxxx...
We interpret a boundary-value problem arising in a cell growth model as a singular Sturm–Liouville...
We interpret a boundary-value problem arising in a cell growth model as a singular Sturm–Liouville...
We interpret a boundary-value problem arising in a cell growth model as a singular Sturm–Liouville...