Bipartite network inference is a ubiquitous problem across disciplines. One important example in the field molecular biology is gene regulatory network inference. Gene regulatory networks are an instrumental tool aiding in the discovery of the molecular mechanisms driving diverse diseases, including cancer. However, only noisy observations of the projections of these regulatory networks are typically assayed. In an effort to better estimate regulatory networks from their noisy projections, we formulate a non-convex but analytically tractable optimization problem called OTTER. This problem can be interpreted as relaxed graph matching between the two projections of the bipartite network. OTTER's solutions can be derived explicitly and inspire...
BACKGROUND: Reverse-engineering gene networks from expression profiles is a difficult problem for wh...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
Recent advances in high-throughput molecular biology has motivated in the field of bioinformatics th...
To understand how the components of a complex system like the biological cell interact and regulate ...
To understand how the components of a complex system like the biological cell interact and regulate ...
(A) Our network inference algorithm takes as input a gene expression matrix, X, and a prior on netwo...
Reconstructing biomolecular networks from time series mRNA or protein abundance measurements is a ce...
Background: Altered networks of gene regulation underlie many complex conditions, including cancer. ...
International audienceBackgroundInferring gene networks from high-throughput data constitutes an imp...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
International audienceBackgroundInferring gene networks from high-throughput data constitutes an imp...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
BACKGROUND: Reverse-engineering gene networks from expression profiles is a difficult problem for wh...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
Recent advances in high-throughput molecular biology has motivated in the field of bioinformatics th...
To understand how the components of a complex system like the biological cell interact and regulate ...
To understand how the components of a complex system like the biological cell interact and regulate ...
(A) Our network inference algorithm takes as input a gene expression matrix, X, and a prior on netwo...
Reconstructing biomolecular networks from time series mRNA or protein abundance measurements is a ce...
Background: Altered networks of gene regulation underlie many complex conditions, including cancer. ...
International audienceBackgroundInferring gene networks from high-throughput data constitutes an imp...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
International audienceBackgroundInferring gene networks from high-throughput data constitutes an imp...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
BACKGROUND: Reverse-engineering gene networks from expression profiles is a difficult problem for wh...
International audienceReconstructing gene regulatory network from high-throughput data has many pote...
Recent advances in high-throughput molecular biology has motivated in the field of bioinformatics th...