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The Precision-Recall Plot Is More Informative than the ROC Plot When Evaluating Binary Classifiers on Imbalanced Datasets

PLoS ONE · 2015 · Vol. 10(3) · pp. e0118432–e0118432
Takaya SaitoMarc Rehmsmeier

Abstract

Binary classifiers are routinely evaluated with performance measures such as sensitivity and specificity, and performance is frequently illustrated with Receiver Operating Characteristics (ROC) plots. Alternative measures such as positive predictive value (PPV) and the associated Precision/Recall (PRC) plots are used less frequently. Many bioinformatics studies develop and evaluate classifiers that are to be applied to strongly imbalanced datasets in which the number of negatives outweighs the number of positives significantly. While ROC plots are visually appealing and provide an overview of a classifier's performance across a wide range of specificities, one can ask whether ROC plots could be misleading when applied in imbalanced classification scenarios. We show here that the visual interpretability of ROC plots in the context of imbalanced datasets can be deceptive with respect to conclusions about the reliability of classification performance, owing to an intuitive but wrong interpretation of specificity. PRC plots, on the other hand, can provide the viewer with an accurate prediction of future classification performance due to the fact that they evaluate the fraction of true positives among positive predictions. Our findings have potential implications for the interpretation of a large number of studies that use ROC plots on imbalanced datasets.

Imbalanced Data Classification TechniquesFinancial Distress and Bankruptcy PredictionData Mining Algorithms and ApplicationsInterpretabilityReceiver operating characteristicFalse positive paradoxPlot (graphics)Binary classificationArtificial intelligenceComputer scienceClassifier (UML)False positives and false negativesFalse positive rate

MeSH terms

ClassificationROC CurveDatasets as Topic

Funding

  • Universitetet i Bergen
Citations
4,310
FWCI
109.42
field-weighted impact
References
57
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