The hair follicle system represents a tractable model for the study of stem cell behaviour in regenerative adult epithelial tissue. However, although there are numerous spatial scales of observation (molecular, cellular, follicle and multi follicle), it is not yet clear what mechanisms underpin the follicle growth cycle. In this study we seek to address this problem by describing how the growth dynamics of a large population of follicles can be treated as a classical excitable medium. Defining caricature interactions at the molecular scale and treating a single follicle as a functional unit, a minimal model is proposed in which the follicle growth cycle is an emergent phenomenon. Expressions are derived, in terms of parameters representing ...
Continuous stem cell regeneration is essential for the repair and maintenance of many organs, render...
Continuous stem cell regeneration is essential for the repair and maintenance of many organs, render...
Continuous stem cell regeneration is essential for the repair and maintenance of many organs, render...
<div><p>The hair follicle system represents a tractable model for the study of stem cell behaviour i...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle (HF) regeneration paradigm provides a unique opportunity for studying the collecti...
Hair follicles (HFs) upon development enter a lifelong cycle of growth, regression, and resting. The...
The control principles behind robust cyclic regeneration of hair follicles (HFs) remain unclear. Usi...
Stem cells cycle through active and quiescent states. Large populations of stem cells in an organ ma...
Continuous stem cell regeneration is essential for the repair and maintenance of many organs, render...
Continuous stem cell regeneration is essential for the repair and maintenance of many organs, render...
Continuous stem cell regeneration is essential for the repair and maintenance of many organs, render...
<div><p>The hair follicle system represents a tractable model for the study of stem cell behaviour i...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle system represents a tractable model for the study of stem cell behaviour in regene...
The hair follicle (HF) regeneration paradigm provides a unique opportunity for studying the collecti...
Hair follicles (HFs) upon development enter a lifelong cycle of growth, regression, and resting. The...
The control principles behind robust cyclic regeneration of hair follicles (HFs) remain unclear. Usi...
Stem cells cycle through active and quiescent states. Large populations of stem cells in an organ ma...
Continuous stem cell regeneration is essential for the repair and maintenance of many organs, render...
Continuous stem cell regeneration is essential for the repair and maintenance of many organs, render...
Continuous stem cell regeneration is essential for the repair and maintenance of many organs, render...