Abstract Background The immune response to viral infection is a temporal process, represented by a dynamic and complex network of gene and protein interactions. Here, we present a reverse engineering strategy aimed at capturing the temporal evolution of the underlying Gene Regulatory Networks (GRN). The proposed approach will be an enabling step towards comprehending the dynamic behavior of gene regulation circuitry and mapping the network structure transitions in response to pathogen stimuli. Results We applied the Time Varying Dynamic Bayesian Network (TV-DBN) method for reconstructing the gene regulatory interactions based on time series gene expression data for the mouse C57BL/6J inbred strain after infection with influenza A H1N1 (PR8)...
The inference of regulatory and biochemical networks from large-scale genomics data is a basic probl...
Two major challenges in inferring the sparse topological architecture of Gene Regulatory Networks us...
Influenza is a serious global health threat that shows varying pathogenicity among different virus s...
The immune response to viral infection is a temporal process, represented by a dynamic and complex n...
The immune response to viral infection is regulated by an intricate network of many genes and their ...
The immune response to viral infection is regulated by an intricate network of many genes and their ...
<div><p>The immune response to viral infection is regulated by an intricate network of many genes an...
Current approaches to study transcriptional profiles post influenza infection typically rely on tiss...
AbstractBackgroundGene regulatory networks are complex dynamic systems and the reverse-engineering o...
<div><p>Current approaches to study transcriptional profiles post influenza infection typically rely...
Gene regulatory networks are collections of genes that interact, whether directly or indirectly, wit...
Largely due to the technological advances in bioinformatics, researchers are now garnering interests...
Mammalian host response to pathogenic infections is controlled by a complex regulatory network conne...
Enabled by recent advances in bioinformatics, the inference of gene regulatory networks (GRNs) from ...
Microarray experiments generate vast amounts of data that evidently reflect many aspects of the unde...
The inference of regulatory and biochemical networks from large-scale genomics data is a basic probl...
Two major challenges in inferring the sparse topological architecture of Gene Regulatory Networks us...
Influenza is a serious global health threat that shows varying pathogenicity among different virus s...
The immune response to viral infection is a temporal process, represented by a dynamic and complex n...
The immune response to viral infection is regulated by an intricate network of many genes and their ...
The immune response to viral infection is regulated by an intricate network of many genes and their ...
<div><p>The immune response to viral infection is regulated by an intricate network of many genes an...
Current approaches to study transcriptional profiles post influenza infection typically rely on tiss...
AbstractBackgroundGene regulatory networks are complex dynamic systems and the reverse-engineering o...
<div><p>Current approaches to study transcriptional profiles post influenza infection typically rely...
Gene regulatory networks are collections of genes that interact, whether directly or indirectly, wit...
Largely due to the technological advances in bioinformatics, researchers are now garnering interests...
Mammalian host response to pathogenic infections is controlled by a complex regulatory network conne...
Enabled by recent advances in bioinformatics, the inference of gene regulatory networks (GRNs) from ...
Microarray experiments generate vast amounts of data that evidently reflect many aspects of the unde...
The inference of regulatory and biochemical networks from large-scale genomics data is a basic probl...
Two major challenges in inferring the sparse topological architecture of Gene Regulatory Networks us...
Influenza is a serious global health threat that shows varying pathogenicity among different virus s...