International audienceThe main purpose of this paper is to study the existence of periodic solutions for a nonautonomous differential-difference system describing the dynamics of hematopoietic stem cell (HSC) population under some external periodic regulatory factors at the cellular cycle level. The starting model is a nonautonomous system of two age-structured partial differential equations describing the HSC population in quiescent (G0) and proliferating (G1, S, G2 and M) phase. We are interested in the effects of periodically time varying coefficients due for example to circadian rhythms or to the periodic use of certain drugs, on the dynamics of HSC population. The method of characteristics reduces the age-structured model to a nonauton...
International audienceWe investigate a system of two nonlinear age-structured partial differential e...
International audienceA nonlinear system of two delay differential equations is proposed to model he...
A generalization of the nonautonomous Mackey–Glass equation for the regulation of the hematopoiesis ...
International audienceThe main purpose of this paper is to study the existence of periodic solutions...
Periodic solutions in a mathematical model of blood production with a nonconstant cell cycle Fabien ...
We consider a model describing the dynamics of hematopoietic stem cells with periodic chemotherapy. ...
International audienceA mathematical model of hematopoiesis, describing the dynamics of stem cell po...
Existence and stability of periodic solutions are studied for a system of delay differenti...
We illustrate the appearance of oscillating solutions in delay differential equations mode...
AbstractA mathematical model of hematopoiesis, describing the dynamics of stem cell population, is i...
International audienceWe illustrate the appearance of oscillating solutions in delay differential eq...
Abstract. Under the action of growth factors, proliferating and nonprolifer-ating hematopoietic stem...
International audienceIn this paper, we propose a mathematical model describing the dynamics of hema...
Under the action of growth factors, proliferating and nonproliferating hematopoietic stem cells diff...
Abstract. In this paper, we consider a model describing the dynamics of Hematopoietic Stem Cells (HS...
International audienceWe investigate a system of two nonlinear age-structured partial differential e...
International audienceA nonlinear system of two delay differential equations is proposed to model he...
A generalization of the nonautonomous Mackey–Glass equation for the regulation of the hematopoiesis ...
International audienceThe main purpose of this paper is to study the existence of periodic solutions...
Periodic solutions in a mathematical model of blood production with a nonconstant cell cycle Fabien ...
We consider a model describing the dynamics of hematopoietic stem cells with periodic chemotherapy. ...
International audienceA mathematical model of hematopoiesis, describing the dynamics of stem cell po...
Existence and stability of periodic solutions are studied for a system of delay differenti...
We illustrate the appearance of oscillating solutions in delay differential equations mode...
AbstractA mathematical model of hematopoiesis, describing the dynamics of stem cell population, is i...
International audienceWe illustrate the appearance of oscillating solutions in delay differential eq...
Abstract. Under the action of growth factors, proliferating and nonprolifer-ating hematopoietic stem...
International audienceIn this paper, we propose a mathematical model describing the dynamics of hema...
Under the action of growth factors, proliferating and nonproliferating hematopoietic stem cells diff...
Abstract. In this paper, we consider a model describing the dynamics of Hematopoietic Stem Cells (HS...
International audienceWe investigate a system of two nonlinear age-structured partial differential e...
International audienceA nonlinear system of two delay differential equations is proposed to model he...
A generalization of the nonautonomous Mackey–Glass equation for the regulation of the hematopoiesis ...