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TAX: Tendency-and-Assignment Explainer for Semantic Segmentation with Multi-Annotators

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arxiv 2302.09561 v1 pith:EPZCR54P submitted 2023-02-19 cs.CV cs.AIcs.LG

classification cs.CVcs.AIcs.LG
keywords segmentationofferinterpretabilitysemanticannotatorappliedassignmentdesigned
verification ladder T0 review T1 audit T2 compute T3 formal
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To understand how deep neural networks perform classification predictions, recent research attention has been focusing on developing techniques to offer desirable explanations. However, most existing methods cannot be easily applied for semantic segmentation; moreover, they are not designed to offer interpretability under the multi-annotator setting. Instead of viewing ground-truth pixel-level labels annotated by a single annotator with consistent labeling tendency, we aim at providing interpretable semantic segmentation and answer two critical yet practical questions: "who" contributes to the resulting segmentation, and "why" such an assignment is determined. In this paper, we present a learning framework of Tendency-and-Assignment Explainer (TAX), designed to offer interpretability at the annotator and assignment levels. More specifically, we learn convolution kernel subsets for modeling labeling tendencies of each type of annotation, while a prototype bank is jointly observed to offer visual guidance for learning the above kernels. For evaluation, we consider both synthetic and real-world datasets with multi-annotators. We show that our TAX can be applied to state-of-the-art network architectures with comparable performances, while segmentation interpretability at both levels can be offered accordingly.

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  1. QuMAB: Query-based Multi-Annotator Behavior Modeling with Reliability under Sparse Labels

    cs.MM 2025-07 conditional novelty 6.0 of 10

    QuMAB models each annotator with a lightweight query in a cross-attention network, reconstructs missing labels, and reports accuracy gains over aggregation baselines on two new dense-label datasets.

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