Boolean networks are a popular modeling framework in computational biology to capture the dynamics of molecular networks, such as gene regulatory networks. It has been observed that many published models of such networks are defined by regulatory rules driving the dynamics that have certain so-called canalizing properties. In this paper, we investigate the dynamics of a random Boolean network with such properties using analytical methods and simulations. From our simulations, we observe that Boolean networks with higher canalizing depth have generally fewer attractors, the attractors are smaller, and the basins are larger, with implications for the stability and robustness of the models. These properties are relevant to many biological appl...
We introduce the nested canalyzing depth of a function, which measures the extent to which it retain...
We determine stability and attractor properties of random Boolean genetic network models with canaly...
Gene-regulatory networks control the expression of genes and therefore the phenotype of cells. Model...
Boolean networks are a popular modeling framework in computational biology to capture the dynamics o...
A large influx of experimental data has prompted the development of innovative computational t...
Random Boolean networks are used as generic models for the dynamics of complex systems of interactin...
Networks are used to model systems consisting of many interacting units. The topology of networks ha...
Canalization is a property of Boolean automata that characterizes the extent to which subsets of inp...
<p>Boolean networks are important models of biochemical systems, located at the high end of the abst...
<p>Boolean networks are important models of biochemical systems, located at the high end of the abst...
none6noRandom boolean networks are a model of genetic regulatory networks that has proven able to de...
A Boolean network is a model used to study the interactions between different genes in genetic regul...
AbstractIn line with fields of theoretical computer science and biology that study Boolean automata ...
International audienceIn line with fields of theoretical computer science and biology that study Boo...
Random Boolean Networks (RBNs for short) are strongly simplified models of gene regulatory networks ...
We introduce the nested canalyzing depth of a function, which measures the extent to which it retain...
We determine stability and attractor properties of random Boolean genetic network models with canaly...
Gene-regulatory networks control the expression of genes and therefore the phenotype of cells. Model...
Boolean networks are a popular modeling framework in computational biology to capture the dynamics o...
A large influx of experimental data has prompted the development of innovative computational t...
Random Boolean networks are used as generic models for the dynamics of complex systems of interactin...
Networks are used to model systems consisting of many interacting units. The topology of networks ha...
Canalization is a property of Boolean automata that characterizes the extent to which subsets of inp...
<p>Boolean networks are important models of biochemical systems, located at the high end of the abst...
<p>Boolean networks are important models of biochemical systems, located at the high end of the abst...
none6noRandom boolean networks are a model of genetic regulatory networks that has proven able to de...
A Boolean network is a model used to study the interactions between different genes in genetic regul...
AbstractIn line with fields of theoretical computer science and biology that study Boolean automata ...
International audienceIn line with fields of theoretical computer science and biology that study Boo...
Random Boolean Networks (RBNs for short) are strongly simplified models of gene regulatory networks ...
We introduce the nested canalyzing depth of a function, which measures the extent to which it retain...
We determine stability and attractor properties of random Boolean genetic network models with canaly...
Gene-regulatory networks control the expression of genes and therefore the phenotype of cells. Model...