A mathematical model of stem cell regeneration with epigenetic state transitions
From MaRDI portal
Publication:2628152
DOI10.3934/MBE.2017071zbMath1365.92022OpenAlexW2618512975WikidataQ47601453 ScholiaQ47601453MaRDI QIDQ2628152
Publication date: 12 June 2017
Published in: Mathematical Biosciences and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.3934/mbe.2017071
Medical applications (general) (92C50) Stability of solutions to ordinary differential equations (34D20) Cell biology (92C37)
Related Items (2)
Principal spectral theory for nonlocal systems and applications to stem cell regeneration models ⋮ Evolutionary dynamics of cancer: from epigenetic regulation to cell population dynamics -- mathematical model framework, applications, and open problems
Cites Work
- On positive solutions and the omega limit set for a class of delay differential equations
- Oscillations in cyclical neutropenia: new evidence based on mathematical modeling
- Periodic oscillations in leukopoiesis models with two delays
- Understanding, treating and avoiding hematological disease: better medicine through mathematics?
- Stability and Hopf bifurcation in a mathematical model of pluripotent stem cell dynamics
- A STOCHASTIC MODEL OF STEM CELL PROLIFERATION, BASED ON THE GROWTH OF SPLEEN COLONY-FORMING CELLS
- Mathematical model of adult stem cell regeneration with cross-talk between genetic and epigenetic regulation
- Stochastic Differential Delay Equation, Moment Stability, and Application to Hematopoietic Stem Cell Regulation System
- A Mathematical Study of the Hematopoiesis Process with Applications to Chronic Myelogenous Leukemia
- Multistability in an age-structured model of hematopoiesis: cyclical neutropenia
This page was built for publication: A mathematical model of stem cell regeneration with epigenetic state transitions