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Overview of Class Activation Maps for Visualization Explainability

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arxiv 2309.14304 v1 pith:IZPQXTB4 submitted 2023-09-25 cs.CV cs.AI

classification cs.CVcs.AI
keywords learningactivationclassdeepoverviewtechniquescamscomputer
verification ladder T0 review T1 audit T2 compute T3 formal
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Recent research in deep learning methodology has led to a variety of complex modelling techniques in computer vision (CV) that reach or even outperform human performance. Although these black-box deep learning models have obtained astounding results, they are limited in their interpretability and transparency which are critical to take learning machines to the next step to include them in sensitive decision-support systems involving human supervision. Hence, the development of explainable techniques for computer vision (XCV) has recently attracted increasing attention. In the realm of XCV, Class Activation Maps (CAMs) have become widely recognized and utilized for enhancing interpretability and insights into the decision-making process of deep learning models. This work presents a comprehensive overview of the evolution of Class Activation Map methods over time. It also explores the metrics used for evaluating CAMs and introduces auxiliary techniques to improve the saliency of these methods. The overview concludes by proposing potential avenues for future research in this evolving field.

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  1. CAMs as Shapley Value-based Explainers

    cs.CV 2025-01 conditional novelty 7.0 of 10

    A new framework derives GradCAM and HiResCAM from Shapley values via Taylor expansion and introduces ShapleyCAM, a Hessian-based explanation method.

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