Pages that link to "Item:Q2786776"
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The following pages link to Analysis of a mathematical model for the molecular mechanism of fate decision in mammary stem cells (Q2786776):
Displaying 14 items.
- Mathematical model for two germline stem cells competing for niche occupancy (Q417397) (← links)
- A mathematical model for selective differentiation of neural progenitor cells on micropatterned polymer substrates (Q448998) (← links)
- Characterization of stem cells using mathematical models of multistage cell lineages (Q636413) (← links)
- Stability in mammilary compartmental systems (Q1113818) (← links)
- Determining the control networks regulating stem cell lineages in colonic crypts (Q1704344) (← links)
- Strategies for cancer stem cell elimination: insights from mathematical modeling (Q1784019) (← links)
- Understanding stem cell differentiation through self-organization theory (Q1788562) (← links)
- Developmental autonomy and somatic niche construction promotes robust cell fate decisions (Q1797496) (← links)
- Distinguishing between multiple mathematical models of neural stem cell quiescence and activation during age-related neural stem cell decline in neurogenesis (Q2137778) (← links)
- Cancer stem cell, niche and EGFR decide tumor development and treatment response: a bio-computational simulation study (Q2261637) (← links)
- Stem cell homeostasis by integral feedback through the niche (Q2328241) (← links)
- A 3D mathematical model of coupled stem cell-nutrient dynamics in myocardial regeneration therapy (Q2670164) (← links)
- Deciphering Fate Decision in Normal and Cancer Stem Cells: Mathematical Models and Their Experimental Verification (Q2820382) (← links)
- Multi-scale Modelling for Threshold Dependent Differentiation (Q3392538) (← links)