Inferring, or 'reverse-engineering', gene networks can be defined as the process of identifying gene interactions from experimental data through computational analysis. Gene expression data from microarrays are typically used for this purpose. Here we compared different reverse-engineering algorithms for which ready-to-use software was available and that had been tested on experimental data sets. We show that reverse-engineering algorithms are indeed able to correctly infer regulatory interactions among genes, at least when one performs perturbation experiments complying with the algorithm requirements. These algorithms are superior to classic clustering algorithms for the purpose of finding regulatory interactions among genes, and, althoug...
Experimental innovations starting in the 1990’s leading to the advent of high-throughput experiments...
This contribution gives an initial report of a new project exploring the perspectives and limits of ...
Reverse engineering of gene regulatory networks has been an intensively studied topic in bioinformat...
Inferring, or 'reverse-engineering', gene networks can be defined as the process of identifying gene...
Inferring, or 'reverse-engineering', gene networks can be defined as the process of identifying gene...
Inferring, or 'reverse-engineering', gene networks can be defined as the process of identifying gene...
The aim of this chapter is a step-by-step guide on how to infer gene networks from gene expression p...
The aim of this chapter is a step-by-step guide on how to infer gene networks from gene expression p...
The aim of this chapter is a step-by-step guide on how to infer gene networks from gene expression p...
Motivation: Inferring a gene regulatory network exclusively from microarray expression profiles is a...
The concept of reverse engineering a gene network, i.e., of inferring a genome-wide graph of putativ...
Motivation: Inferring a gene regulatory network exclusively from microarray expression profiles is a...
Reverse engineering of gene networks aims at revealing the structure of the gene regulation network ...
The concept of reverse engineering a gene network, i.e., of inferring a genome-wide graph of putativ...
Regulation of gene expression is a carefully regulated phenomenon in the cell. “Reverse-engineering”...
Experimental innovations starting in the 1990’s leading to the advent of high-throughput experiments...
This contribution gives an initial report of a new project exploring the perspectives and limits of ...
Reverse engineering of gene regulatory networks has been an intensively studied topic in bioinformat...
Inferring, or 'reverse-engineering', gene networks can be defined as the process of identifying gene...
Inferring, or 'reverse-engineering', gene networks can be defined as the process of identifying gene...
Inferring, or 'reverse-engineering', gene networks can be defined as the process of identifying gene...
The aim of this chapter is a step-by-step guide on how to infer gene networks from gene expression p...
The aim of this chapter is a step-by-step guide on how to infer gene networks from gene expression p...
The aim of this chapter is a step-by-step guide on how to infer gene networks from gene expression p...
Motivation: Inferring a gene regulatory network exclusively from microarray expression profiles is a...
The concept of reverse engineering a gene network, i.e., of inferring a genome-wide graph of putativ...
Motivation: Inferring a gene regulatory network exclusively from microarray expression profiles is a...
Reverse engineering of gene networks aims at revealing the structure of the gene regulation network ...
The concept of reverse engineering a gene network, i.e., of inferring a genome-wide graph of putativ...
Regulation of gene expression is a carefully regulated phenomenon in the cell. “Reverse-engineering”...
Experimental innovations starting in the 1990’s leading to the advent of high-throughput experiments...
This contribution gives an initial report of a new project exploring the perspectives and limits of ...
Reverse engineering of gene regulatory networks has been an intensively studied topic in bioinformat...