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VLind-Bench: Measuring Language Priors in Large Vision-Language Models

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arxiv 2406.08702 v4 pith:I25IXUHK submitted 2024-06-13 cs.AI cs.CLcs.CV

classification cs.AIcs.CLcs.CV
keywords languagepriorsbenchmarklvlmsimagesmodelstestsbasic
verification ladder T0 review T1 audit T2 compute T3 formal
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Large Vision-Language Models (LVLMs) have demonstrated outstanding performance across various multimodal tasks. However, they suffer from a problem known as language prior, where responses are generated based solely on textual patterns while disregarding image information. Addressing the issue of language prior is crucial, as it can lead to undesirable biases or hallucinations when dealing with images that are out of training distribution. Despite its importance, current methods for accurately measuring language priors in LVLMs are poorly studied. Although existing benchmarks based on counterfactual or out-of-distribution images can partially be used to measure language priors, they fail to disentangle language priors from other confounding factors. To this end, we propose a new benchmark called VLind-Bench, which is the first benchmark specifically designed to measure the language priors, or blindness, of LVLMs. It not only includes tests on counterfactual images to assess language priors but also involves a series of tests to evaluate more basic capabilities such as commonsense knowledge, visual perception, and commonsense biases. For each instance in our benchmark, we ensure that all these basic tests are passed before evaluating the language priors, thereby minimizing the influence of other factors on the assessment. The evaluation and analysis of recent LVLMs in our benchmark reveal that almost all models exhibit a significant reliance on language priors, presenting a strong challenge in the field.

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Cited by 3 Pith papers

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

  1. Investigating and Enhancing the Robustness of Large Multimodal Models Against Temporal Inconsistency

    cs.CV 2025-05 conditional novelty 6.0 of 10

    Large multimodal models are shown to rely on prior knowledge and text cues rather than video order under temporal inconsistency, and a benchmark plus preference-optimization method partially correct this.

  2. Examining Vision Language Models through Multi-dimensional Experiments with Vision and Text Features

    cs.CV 2025-09 conditional novelty 4.0 of 10

    Prompt specificity measurably affects counting accuracy and attention allocation in Qwen2.5-VL and Kimi-VL, and can partially overcome learned visual priors.

  3. MLLMs are Deeply Affected by Modality Bias

    cs.AI 2025-05 conditional novelty 4.0 of 10

    A position paper with a case study showing that multimodal LLMs rely on language priors and underuse visual input, together with a research roadmap and calls for balanced training.

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