In this work, we explore the properties of a control mechanism exerted on random Boolean networks that takes inspiration from the methylation mechanisms in cell differentiation and consists in progressively freezing (i.e. clamping to 0) some nodes of the network. We study the main dynamical properties of this mechanism both theoretically and in simulation. In particular, we show that when applied to random Boolean networks, it makes it possible to attain dynamics and path dependence typical of biological cells undergoing differentiation
A mathematical model is proposed which is able to describe the most important features of cell di\uf...
Progress in cell type reprogramming has revived the interest in Waddington’s concept of the epigenet...
The significant role of epigenetic mechanisms within natural systems has become increasingly clear. ...
In this work, we explore the properties of a control mechanism exerted on random Boolean networks th...
none4noIn this work, we explore the properties of a control mechanism exerted on random Boolean netw...
In this work, we explore the properties of a control mechanism exerted on random Boolean networks th...
In this work, we explore the properties of a control mechanism exerted on random Boolean networks th...
Boolean networks are currently acknowledged as a powerful model for cell dynamics phenomena. Recentl...
Cellular types of multicellular organisms are the stable results of complex intertwined processes t...
Cellular types of multicellular organisms are the stable results of complex intertwined processes t...
Cell differentiation is a complex phenomenon whereby a stem cell becomes progressively more speciali...
One of the major challenges in complex systems biology is that of providing a general theoretical fr...
One of the major challenges in complex systems biology is that of providing a general theoretical fr...
A mathematical model is proposed which is able to describe the most important features of cell differ...
Real living cell is a complex system governed by many process which are not yet fully understood: th...
A mathematical model is proposed which is able to describe the most important features of cell di\uf...
Progress in cell type reprogramming has revived the interest in Waddington’s concept of the epigenet...
The significant role of epigenetic mechanisms within natural systems has become increasingly clear. ...
In this work, we explore the properties of a control mechanism exerted on random Boolean networks th...
none4noIn this work, we explore the properties of a control mechanism exerted on random Boolean netw...
In this work, we explore the properties of a control mechanism exerted on random Boolean networks th...
In this work, we explore the properties of a control mechanism exerted on random Boolean networks th...
Boolean networks are currently acknowledged as a powerful model for cell dynamics phenomena. Recentl...
Cellular types of multicellular organisms are the stable results of complex intertwined processes t...
Cellular types of multicellular organisms are the stable results of complex intertwined processes t...
Cell differentiation is a complex phenomenon whereby a stem cell becomes progressively more speciali...
One of the major challenges in complex systems biology is that of providing a general theoretical fr...
One of the major challenges in complex systems biology is that of providing a general theoretical fr...
A mathematical model is proposed which is able to describe the most important features of cell differ...
Real living cell is a complex system governed by many process which are not yet fully understood: th...
A mathematical model is proposed which is able to describe the most important features of cell di\uf...
Progress in cell type reprogramming has revived the interest in Waddington’s concept of the epigenet...
The significant role of epigenetic mechanisms within natural systems has become increasingly clear. ...