The Gene Ontology (GO) has become the internationally accepted standard for representing function, process, and location aspects of gene products. The wealth of GO annotation data provides a valuable source of implicit knowledge of relationships among these aspects. We describe a new method for association rule mining to discover implicit co-occurrence relationships across the GO sub-ontologies at multiple levels of abstraction. Prior work on association rule mining in the GO has concentrated on mining knowledge at a single level of abstraction and/or between terms from the same sub-ontology. We have developed a bottom-up generalization procedure called Cross-ontology Data Mining-Level by Level (COLL) that takes into account the structure a...
AbstractIn biology, the accumulation of raw experimental data has been accompanied by the accumulati...
The Gene Ontology (GO) is a controlled vocabulary widely used for the annotation of gene products. G...
The wide spread use of ontologies in many scientific areas creates a wealth of ontologyannotated dat...
The Gene Ontology (GO) has become the internationally accepted standard for representing function, p...
The Gene Ontology (GO) has become the internationally accepted standard for representing function, p...
The Gene Ontology (GO) has become the internationally accepted standard for representing function, p...
The Gene Ontology (GO) has become the internationally accepted standard for representing function, p...
The Gene Ontology (GO) has become the internationally accepted standard for representing function, p...
The constantly increasing volume and complexity of available biological data requires new methods fo...
The constantly increasing volume and complexity of available biological data requires new methods fo...
The constantly increasing volume and complexity of available biological data requires new methods fo...
<div><p>The constantly increasing volume and complexity of available biological data requires new me...
Abstract Background Gene Ontology (GO) has been widely used in biological databases, annotation proj...
The constantly increasing volume and complexity of available biological data requires new methods fo...
The Gene Ontology (GO) is a controlled vocabulary widely used for the annotation of gene products. G...
AbstractIn biology, the accumulation of raw experimental data has been accompanied by the accumulati...
The Gene Ontology (GO) is a controlled vocabulary widely used for the annotation of gene products. G...
The wide spread use of ontologies in many scientific areas creates a wealth of ontologyannotated dat...
The Gene Ontology (GO) has become the internationally accepted standard for representing function, p...
The Gene Ontology (GO) has become the internationally accepted standard for representing function, p...
The Gene Ontology (GO) has become the internationally accepted standard for representing function, p...
The Gene Ontology (GO) has become the internationally accepted standard for representing function, p...
The Gene Ontology (GO) has become the internationally accepted standard for representing function, p...
The constantly increasing volume and complexity of available biological data requires new methods fo...
The constantly increasing volume and complexity of available biological data requires new methods fo...
The constantly increasing volume and complexity of available biological data requires new methods fo...
<div><p>The constantly increasing volume and complexity of available biological data requires new me...
Abstract Background Gene Ontology (GO) has been widely used in biological databases, annotation proj...
The constantly increasing volume and complexity of available biological data requires new methods fo...
The Gene Ontology (GO) is a controlled vocabulary widely used for the annotation of gene products. G...
AbstractIn biology, the accumulation of raw experimental data has been accompanied by the accumulati...
The Gene Ontology (GO) is a controlled vocabulary widely used for the annotation of gene products. G...
The wide spread use of ontologies in many scientific areas creates a wealth of ontologyannotated dat...