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CVPR2026顶会

Towards Reasoning-Preserving Unlearning in Multimodal Large Language Models

Hongji Li, Manjiang Yu, Junchi Yao, PRIYANKA SINGH, Xue Li, Di Wang, Lijie Hu

2026年份
3被引次数
6顶会引用

摘要

Machine unlearning aims to erase requested data from trained models without full retraining. For Reasoning Multimodal Large Language Models (RMLLMs), this is uniquely challenging: intermediate chain-of-thought steps can still leak sensitive information even when final answers are forgotten, and overly aggressive interventions easily damage general reasoning ability. Yet no benchmark jointly evaluates how well unlearning methods suppress reasoning-level leakage while preserving reasoning competence. We address this gap with RMLLMU-Bench, the first benchmark for RMLLM unlearning that extends standard forgetting metrics with dedicated measures of reasoning leakage and reasoning retention. A systematic evaluation on RMLLMU-Bench reveals that existing unlearning methods for MLLMs and Large (Language) Reasoning Models (LRMs) either leave substantial leakage in the reasoning process or severely degrade reasoning performance. To address these gaps, we propose R-MUSE (Reasoning-preserving MLLM Unlearning via Subspace guidance and Adaptive StEering), a training-free and inference-time intervention framework that steers internal representations to forget both answers and reasoning traces while explicitly preserving general reasoning. Experiments on RMLLMU-Bench demonstrate that R-MUSE achieves a substantially better balance between effective forgetting and reasoning retention.

Recently, the ability to generate chain-of-thought(CoT) during test-time computation has enabled MLLMs to evolve into RMLLMs, which no longer simply output the final answer but are explicitly guided to generate step-by-step reasoning trajectories during inference. However, this reasoning capability introduces a new challenge to MLLM unlearning. A core problem is that simply forgetting the final answer is no longer sufficient. As shown in Figure 1, even if the answer is changed, sensitive information can still appear in intermediate reasoning (Reasoning Leakage

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