Title of article :
A structured erythropoiesis model with nonlinear cell maturation velocity and hormone decay rate
Author/Authors :
Ackleh، نويسنده , , Azmy S. and Deng، نويسنده , , Keng and Ito، نويسنده , , Kazufumi and Thibodeaux، نويسنده , , Jeremy، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
28
From page :
21
To page :
48
Abstract :
We develop a quasilinear structured model that describes the regulation of erythropoiesis, the process in which red blood cells are developed. In our model, the maturation velocity of precursor cells is assumed to be a function of the erythropoietin hormone, and the decay rate of this hormone is assumed to be a function of the number of precursor cells, unlike other models which assume these parameters to be constants. Existence-uniqueness results are established and convergence of a finite difference approximation to the unique solution of the model is obtained. The finite difference scheme is then used to investigate the effects of these nonlinear parameters on the model dynamics. Our results show that a velocity of precursor cells maturation rate which is an increasing function of the hormone level and a decay rate of the hormone which is an increasing function of the number of precursor cells have a stabilizing effect on the dynamics of the model. While assuming that one parameter is a function and letting the other be a constant stabilizes the oscillations in the mature cells level, the effect is more significant when both parameters are taken to be functions. A study of robustness with respect to the forms of these functions and parameter sensitivity is also carried out.
Keywords :
ERYTHROPOIESIS , Structured model , Finite difference approximation , Behavior of solutions , Existence-uniqueness
Journal title :
Mathematical Biosciences
Serial Year :
2006
Journal title :
Mathematical Biosciences
Record number :
1588975
Link To Document :
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