We analyze the asymptotic behavior of a partial differential equation (PDE) model for hematopoiesis. This PDE model is derived from the original agent-based model formulated by Roeder et al. in [35], and it describes the progression of blood cell development from the stem cell to the terminally differentiated state. To conduct our analysis, we start with the PDE model of [20], which coincides very well with the simulation results obtained by Roeder et al. We simplify the PDE model to make it amenable to analysis and justify our approximations using numerical simulations. An analysis of the simplified PDE model proves to exhibit very similar properties to those of the original agent-based model, even if for slightly different parameters. Hen...
International audienceWe propose and analyze a simplified version of a partial differential equation...
[Non fourni]Acute Myeloid Leukemia (AML) is a cancer of white cells characterized by a quick prolife...
The basic model. Our mathematical model is based on the architecture of the hematopoi-etic system as...
We analyze the asymptotic behavior of a partial differential equation (PDE) model for hematopoiesis....
International audienceWe analyze the asymptotic behavior of a partial differential equation (PDE) mod...
We propose and analyze a system of partial differential equations (PDEs) for chronic myeloid leukemi...
International audienceWe propose and analyze a mathematical model of hematopoietic stem cell dynamic...
Abstract Previously, we have modeled hematopoietic stem cell organization by a sto-chastic, single c...
In this paper, a mathematical analysis of a model describing the evolution of chronic myeloid leukem...
International audienceWe investigate a mathematical model of blood cell production in the bone marro...
International audienceWe propose and analyze an age-structured partial differential model for hemato...
Periodic chronic myelogenous leukemia (PCML) is an interesting dynamical disease of the hematopoieti...
International audienceA mathematical model of hematopoiesis, describing the dynamics of stem cell po...
The objective of this PhD is the study of chronic myeloid leukemia (CML), chronic Lymphoid leukemia ...
Chronic Myelogenous Leukemia (CML) is one of the most common types of leukemia. It is characterized ...
International audienceWe propose and analyze a simplified version of a partial differential equation...
[Non fourni]Acute Myeloid Leukemia (AML) is a cancer of white cells characterized by a quick prolife...
The basic model. Our mathematical model is based on the architecture of the hematopoi-etic system as...
We analyze the asymptotic behavior of a partial differential equation (PDE) model for hematopoiesis....
International audienceWe analyze the asymptotic behavior of a partial differential equation (PDE) mod...
We propose and analyze a system of partial differential equations (PDEs) for chronic myeloid leukemi...
International audienceWe propose and analyze a mathematical model of hematopoietic stem cell dynamic...
Abstract Previously, we have modeled hematopoietic stem cell organization by a sto-chastic, single c...
In this paper, a mathematical analysis of a model describing the evolution of chronic myeloid leukem...
International audienceWe investigate a mathematical model of blood cell production in the bone marro...
International audienceWe propose and analyze an age-structured partial differential model for hemato...
Periodic chronic myelogenous leukemia (PCML) is an interesting dynamical disease of the hematopoieti...
International audienceA mathematical model of hematopoiesis, describing the dynamics of stem cell po...
The objective of this PhD is the study of chronic myeloid leukemia (CML), chronic Lymphoid leukemia ...
Chronic Myelogenous Leukemia (CML) is one of the most common types of leukemia. It is characterized ...
International audienceWe propose and analyze a simplified version of a partial differential equation...
[Non fourni]Acute Myeloid Leukemia (AML) is a cancer of white cells characterized by a quick prolife...
The basic model. Our mathematical model is based on the architecture of the hematopoi-etic system as...