We investigate the properties of a recently introduced asymmetric association measure, called inner composition alignment (IOTA), aimed at inferring regulatory links (couplings). We show that the measure can be used to determine the direction of coupling, detect superfluous links, and to account for autoregulation. In addition, the measure can be extended to infer the type of regulation (positive or negative). The capabilities of IOTA to correctly infer couplings together with their directionality are compared against Kendall’s rank correlation for time series of different lengths, particularly focussing on biological examples. We demonstrate that an extended version of the measure, bidirectional inner composition alignment (biIOTA), increa...
Background: Inferring regulatory interactions between genes from transcriptomics time-resolved data,...
Intrinsic brain activity is characterized by highly organized co-activations between different regio...
Motivation: Accurate, context-specific regulation of gene expression is essential for all organisms....
Network analysis and its exploit of graph-theoretical properties such as topology are important math...
Inferring the topology of a network using the knowledge of the signals of each of the interacting un...
The study of networks has become increasingly important in many disciplines ranging from physics to ...
Motivation: Accurate, context specific regulation of gene expression is essential for all organisms....
A new information-theoretic measure, called coupling entropy, is proposed here to detect the causal ...
Recent advances in experimental biology studies have produced large amount of molecular activity dat...
The inference of an underlying network topology from local observations of a complex system composed...
Reconstructing gene regulatory networks (GRNs) from expression data is a challenging task that has b...
[eng] In order to extract hidden joint information from two possibly uncorrelated time-series, we ex...
Inferring regulatory relationships among many genes based on their temporal variation in transcript ...
Funding Information: PL acknowledges financial support from Medical Research Scotland (Grant No.: RG...
Meine Arbeit beschäftigt sich mit der Rekonstruktion genregulatorischer Netze, um die Funktionalität...
Background: Inferring regulatory interactions between genes from transcriptomics time-resolved data,...
Intrinsic brain activity is characterized by highly organized co-activations between different regio...
Motivation: Accurate, context-specific regulation of gene expression is essential for all organisms....
Network analysis and its exploit of graph-theoretical properties such as topology are important math...
Inferring the topology of a network using the knowledge of the signals of each of the interacting un...
The study of networks has become increasingly important in many disciplines ranging from physics to ...
Motivation: Accurate, context specific regulation of gene expression is essential for all organisms....
A new information-theoretic measure, called coupling entropy, is proposed here to detect the causal ...
Recent advances in experimental biology studies have produced large amount of molecular activity dat...
The inference of an underlying network topology from local observations of a complex system composed...
Reconstructing gene regulatory networks (GRNs) from expression data is a challenging task that has b...
[eng] In order to extract hidden joint information from two possibly uncorrelated time-series, we ex...
Inferring regulatory relationships among many genes based on their temporal variation in transcript ...
Funding Information: PL acknowledges financial support from Medical Research Scotland (Grant No.: RG...
Meine Arbeit beschäftigt sich mit der Rekonstruktion genregulatorischer Netze, um die Funktionalität...
Background: Inferring regulatory interactions between genes from transcriptomics time-resolved data,...
Intrinsic brain activity is characterized by highly organized co-activations between different regio...
Motivation: Accurate, context-specific regulation of gene expression is essential for all organisms....