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Circumventing Concept Erasure Methods For Text-to-Image Generative Models

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arxiv 2308.01508 v2 pith:VHSEF624 submitted 2023-08-03 cs.LG cs.CRcs.CV

classification cs.LGcs.CRcs.CV
keywords methodsmodelsconceptsconcepterasuretext-to-imagegenerativeimages
verification ladder T0 review T1 audit T2 compute T3 formal
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Text-to-image generative models can produce photo-realistic images for an extremely broad range of concepts, and their usage has proliferated widely among the general public. On the flip side, these models have numerous drawbacks, including their potential to generate images featuring sexually explicit content, mirror artistic styles without permission, or even hallucinate (or deepfake) the likenesses of celebrities. Consequently, various methods have been proposed in order to "erase" sensitive concepts from text-to-image models. In this work, we examine five recently proposed concept erasure methods, and show that targeted concepts are not fully excised from any of these methods. Specifically, we leverage the existence of special learned word embeddings that can retrieve "erased" concepts from the sanitized models with no alterations to their weights. Our results highlight the brittleness of post hoc concept erasure methods, and call into question their use in the algorithmic toolkit for AI safety.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. To Erase, or Not to Erase: Robust Training-Free Concept Erasure with Preservation aware Adaptive Ranked Subspace Expansion

    cs.CV 2026-07 conditional novelty 6.5 of 10

    Diffusion-grounded erase/retain retrieval plus retain-orthogonal value projection and trigger-guided subspace expansion erases concepts more robustly than prior CETs while keeping FID/CLIP near the unedited model.

  2. ReVision : A Post-Hoc, Vision-Based Technique for Replacing Unacceptable Concepts in Image Generation Pipeline

    cs.CR 2026-02 conditional novelty 4.0 of 10

    ReVision uses a vision-language model's bounding box to gate attention-based image editing, suppressing unsafe concepts while better preserving benign background in multi-concept scenes.

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