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Eyes Wide Shut? Exploring the Visual Shortcomings of Multimodal LLMs

Shengbang Tong,Zhuang Liu,3 Authors,Saining Xie

2024 · DOI: 10.1109/CVPR52733.2024.00914
Computer Vision and Pattern Recognition · 349 Citations

TLDR

It is demonstrated that integrating vision self-supervised learning features with MLLMs can significantly enhance their visual grounding capabilities, suggesting visual representation learning remains an open challenge, and accurate visual grounding is crucial for future successful multimodal systems.

Abstract

Is vision good enough for language? Recent advancements in multimodal models primarily stem from the powerful reasoning abilities of large language models (LLMs). However, the visual component typically depends only on the instance-level contrastive language-image pre-training (CLIP). Our research reveals that the visual capabilities in recent MultiModal LLMs (MLLMs) still exhibit systematic shortcomings. To understand the roots of these errors, we explore the gap between the visual embedding space of CLIP and vision-only self-supervised learning. We identify “CLIP-blind pairs”- images that CLIP perceives as similar despite their clear visual differences. With these pairs, we construct the Multimodal Visual Patterns (MMVP) benchmark. MMVP exposes areas where state-of-the-art systems, including GPT-4V, struggle with straightforward questions across nine basic visual patterns, often providing incorrect answers and hallucinated explanations. We further evaluate various CLIP-based vision-and-language models and found a notable correlation between visual patterns that challenge CLIP models and those problematic for multimodal LLMs. As an initial effort to address these issues, we propose a Mixture of Features (MoF) approach, demonstrating that integrating vision self-supervised learning features with MLLMs can significantly enhance their visual grounding capabilities. Together, our research suggests visual representation learning remains an open challenge, and accurate visual grounding is crucial for future successful multimodal systems.

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