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Decision Trees for Hierarchical Multilabel Classification: A Case Study in Functional Genomics

Lecture notes in computer sciencePublished 1 January 2006Open access
Hendrik Blockeel, Leander Schietgat, Jan Struyf, Sašo Džeroski, Amanda Clare
Citations129
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TL;DR

An empirical study of decision tree approaches to HMC in the area of functional genomics finds that HMC tree learning is more robust to overfitting than regular tree learning.

Abstract

Hierarchical multilabel classification (HMC) is a variant of classification where instances may belong to multiple classes organized in a hierarchy. The task is relevant for several application domains. This paper presents an empirical study of decision tree approaches to HMC in the area of functional genomics. We compare learning a single HMC tree (which makes predictions for all classes together) to learning a set of regular classification trees (one for each class). Interestingly, on all 12 datasets we use, the HMC tree wins on all fronts: it is faster to learn and to apply, easier to interpret, and has similar or better predictive performance than the set of regular trees. It turns out that HMC tree learning is more robust to overfitting than regular tree learning.

Keywords

Computer ScienceBiochemistry, Genetics and Molecular Biology