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Revisiting the robustness of post-hoc interpretability methods

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arxiv 2407.19683 v1 pith:ZPPJYSZN submitted 2024-07-29 cs.LG cs.AI

Revisiting the robustness of post-hoc interpretability methods

classification cs.LG cs.AI
keywords interpretabilitypost-hocmethodstheyassessmentdifferentrobustnessstrategies
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Post-hoc interpretability methods play a critical role in explainable artificial intelligence (XAI), as they pinpoint portions of data that a trained deep learning model deemed important to make a decision. However, different post-hoc interpretability methods often provide different results, casting doubts on their accuracy. For this reason, several evaluation strategies have been proposed to understand the accuracy of post-hoc interpretability. Many of these evaluation strategies provide a coarse-grained assessment -- i.e., they evaluate how the performance of the model degrades on average by corrupting different data points across multiple samples. While these strategies are effective in selecting the post-hoc interpretability method that is most reliable on average, they fail to provide a sample-level, also referred to as fine-grained, assessment. In other words, they do not measure the robustness of post-hoc interpretability methods. We propose an approach and two new metrics to provide a fine-grained assessment of post-hoc interpretability methods. We show that the robustness is generally linked to its coarse-grained performance.

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  1. Reliability, Faithfulness, and the Limits of Post-hoc Explanations of Opaque Scientific Models

    cs.LG 2026-06 unverdicted novelty 5.0

    Reliability and faithfulness of post-hoc explanations do not suffice to support claims about how a scientific phenomenon is structured.