Identifying the mechanism of intercellular feedback regulation is critical for the basic understanding of tissue growth control in organisms. In this paper, we analyze a tissue growth model consisting of a single lineage of two cell types regulated by negative feedback signaling molecules that undergo spatial diffusion. By deriving the fixed points for the uniform steady states and carrying out linear stability analysis, phase diagrams are obtained analytically for arbitrary parameters of the model. Two different generic growth modes are found: blow-up growth and final-state controlled growth which are governed by the nontrivial fixed point and the trivial fixed point, respectively, and can be sensitively switched by varying the negative fe...
Cells are exposed to a range of external and internal disturbances that may influence the function o...
Regulation of cell behaviour and population size is presumed to be not unlike classical regulation i...
Identifying the exact regulatory circuits that can stably maintain tissue homeostasis is critical fo...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
The molecular mechanisms that regulate tissue growth are diverse, but the objectives of growth contr...
Understanding the dynamics of cell population allows insight into the control mechanism of the growt...
Feedback regulation of cell lineage progression plays an important role in tissue size homeostasis, ...
<div><p>Feedback regulation of cell lineage progression plays an important role in tissue size homeo...
BackgroundHow tissue and organ sizes are specified is one of the great unsolved mysteries in biology...
BackgroundHow tissue and organ sizes are specified is one of the great unsolved mysteries in biology...
Tumor emergence and progression is a complex phenomenon that assumes special molecular and cellular ...
Background How tissue and organ sizes are specified is one of the great unsolved mysteries in biolo...
Tumor emergence and progression is a complex phenomenon that assumes special molecular and cellular ...
Cells are exposed to a range of external and internal disturbances that may influence the function o...
Regulation of cell behaviour and population size is presumed to be not unlike classical regulation i...
Identifying the exact regulatory circuits that can stably maintain tissue homeostasis is critical fo...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
The molecular mechanisms that regulate tissue growth are diverse, but the objectives of growth contr...
Understanding the dynamics of cell population allows insight into the control mechanism of the growt...
Feedback regulation of cell lineage progression plays an important role in tissue size homeostasis, ...
<div><p>Feedback regulation of cell lineage progression plays an important role in tissue size homeo...
BackgroundHow tissue and organ sizes are specified is one of the great unsolved mysteries in biology...
BackgroundHow tissue and organ sizes are specified is one of the great unsolved mysteries in biology...
Tumor emergence and progression is a complex phenomenon that assumes special molecular and cellular ...
Background How tissue and organ sizes are specified is one of the great unsolved mysteries in biolo...
Tumor emergence and progression is a complex phenomenon that assumes special molecular and cellular ...
Cells are exposed to a range of external and internal disturbances that may influence the function o...
Regulation of cell behaviour and population size is presumed to be not unlike classical regulation i...
Identifying the exact regulatory circuits that can stably maintain tissue homeostasis is critical fo...