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The "Beatrix'' Resurrections: Robust Backdoor Detection via Gram Matrices

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arxiv 2209.11715 v3 pith:OULRMOJI submitted 2022-09-23 cs.CR cs.AI

classification cs.CRcs.AI
keywords backdoorbeatrixgraminputpatternssamplesactivationassumption
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Deep Neural Networks (DNNs) are susceptible to backdoor attacks during training. The model corrupted in this way functions normally, but when triggered by certain patterns in the input, produces a predefined target label. Existing defenses usually rely on the assumption of the universal backdoor setting in which poisoned samples share the same uniform trigger. However, recent advanced backdoor attacks show that this assumption is no longer valid in dynamic backdoors where the triggers vary from input to input, thereby defeating the existing defenses. In this work, we propose a novel technique, Beatrix (backdoor detection via Gram matrix). Beatrix utilizes Gram matrix to capture not only the feature correlations but also the appropriately high-order information of the representations. By learning class-conditional statistics from activation patterns of normal samples, Beatrix can identify poisoned samples by capturing the anomalies in activation patterns. To further improve the performance in identifying target labels, Beatrix leverages kernel-based testing without making any prior assumptions on representation distribution. We demonstrate the effectiveness of our method through extensive evaluation and comparison with state-of-the-art defensive techniques. The experimental results show that our approach achieves an F1 score of 91.1% in detecting dynamic backdoors, while the state of the art can only reach 36.9%.

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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. Poison in the Well: Feature Embedding Disruption in Backdoor Attacks

    cs.CR 2025-05 conditional novelty 5.0 of 10

    A trigger optimized to align poisoned-image features achieves near-100% backdoor success at 0.01-0.05% poison rates on image benchmarks.

  2. Beyond Black-Box Obfuscation: Mechanistic Analysis and Defense of White-Box Monitors

    cs.AI 2025-05 reject novelty 5.0 of 10

    SafetyNet is an ensemble of standard outlier detectors for LLM backdoor monitoring, but its key mechanistic claim and headline numbers are contradicted by inconsistent tables and a mismatched abstract.

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