In Gene Regulatory Networks research there is a considerable lack of tech- niques and tools to understand these networks from a System Biology point of view. The typical biological approach is to reconstruct a particular network from expression patterns, then try to validate its dynamics by simulation, use simulation to analyze its reactions to some perturbations, and finally go back “in vitro” to validate the simulation results. Nevertheless, when the goal is to understand the high-level, general mechanisms that allow these networks to work or to be stable under mild perturbations, this type of approach has shown very strong limitations. In this work we want to better understand the role of miRNA as a stabilizing mechanism in gene regulato...
Gene-on-gene regulations are key components of every living organism. Dynamical abstract models of g...
This dissertation attempts to answer some of the vital questions involved in the genetic regulatory ...
A Boolean model is a simple, discrete and dynamic model without the need to consider the effects at ...
Gene Regulatory Networks (GRNs) model some of the mechanisms that regulate gene expression. Among th...
Boolean Networks are emerging as a simple yet powerful for- malism to model and study Gene Regulator...
Gene Regulatory Networks (GRNs) model some of the mechanisms that regulate gene expression. Among th...
Background: Networks Biology allows the study of complex interactions between biological systems usi...
Abstract. Boolean Networks are emerging as a simple yet powerful for-malism to model and study Gene ...
Gene-regulatory networks control the expression of genes and therefore the phenotype of cells. Model...
Gene regulatory networks (GRNs) describe how a collection of genes governs the processes within a ce...
Gene regulatory networks (GRNs) describe how a collection of genes governs the processes within a ce...
Gene regulatory networks (GRNs) describe how a collection of genes governs the processes within a ce...
Gene-on-gene regulations are key components of every living organism. Dynamical abstract models of g...
Gene Regulatory Networks represent the interactions among genes regulating the activation of specifi...
Gene Regulatory Networks represent the interactions among genes regulating the activation of specifi...
Gene-on-gene regulations are key components of every living organism. Dynamical abstract models of g...
This dissertation attempts to answer some of the vital questions involved in the genetic regulatory ...
A Boolean model is a simple, discrete and dynamic model without the need to consider the effects at ...
Gene Regulatory Networks (GRNs) model some of the mechanisms that regulate gene expression. Among th...
Boolean Networks are emerging as a simple yet powerful for- malism to model and study Gene Regulator...
Gene Regulatory Networks (GRNs) model some of the mechanisms that regulate gene expression. Among th...
Background: Networks Biology allows the study of complex interactions between biological systems usi...
Abstract. Boolean Networks are emerging as a simple yet powerful for-malism to model and study Gene ...
Gene-regulatory networks control the expression of genes and therefore the phenotype of cells. Model...
Gene regulatory networks (GRNs) describe how a collection of genes governs the processes within a ce...
Gene regulatory networks (GRNs) describe how a collection of genes governs the processes within a ce...
Gene regulatory networks (GRNs) describe how a collection of genes governs the processes within a ce...
Gene-on-gene regulations are key components of every living organism. Dynamical abstract models of g...
Gene Regulatory Networks represent the interactions among genes regulating the activation of specifi...
Gene Regulatory Networks represent the interactions among genes regulating the activation of specifi...
Gene-on-gene regulations are key components of every living organism. Dynamical abstract models of g...
This dissertation attempts to answer some of the vital questions involved in the genetic regulatory ...
A Boolean model is a simple, discrete and dynamic model without the need to consider the effects at ...