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Characterizing Text Branch Sensitivity in Medical Vision-Language Segmentation via Evidence Decoupling

arxiv.org/abs/2609.02663

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Updated 4 h ago · first seen 11 Sept 2026

paper_01M294GKN7JE0FYM2FGQ0NA9J9

Published
11 Sept 2026
T1 · 4 h ago
arXiv
2609.02663
T1 · 4 h ago
Category
cs.CV
T1 · 4 h ago

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https://arxiv.org/abs/2609.02663currentcurrentarXiv (Atom API + RSS)T1highdeterministic

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Pretrained vision-language models (VLMs) have shown promising performance in medical image segmentation by incorporating clinical text. However, it remains unclear how much textual information actually contributes to pixel-level predictions. In this work, we systematically investigate the role of text in multimodal medical image segmentation. We first analyze several commonly used fusion strategies and find that segmentation performance is largely insensitive to the choice of fusion module. To further understand modality interactions, we propose an Evidence Decoupling Decoder (EDD) based on evidential deep learning and deep supervision. EDD serves as an internal representation analysis tool that decomposes image evidence and text-modulated evidence throughout the decoding process while maintaining competitive segmentation performance. Experimental results show that the sensitivity to text perturbation varies substantially across datasets. On BUSI and BTMRI, removing text causes catastrophic performance drops, indicating strong model reliance on textual input. On ISIC and Kvasir-SEG, text exerts relatively marginal influence. We further find that text affects predictions mainly through global semantic modulation rather than independent spatial localization, and that the specific semantic components driving text sensitivity differ across datasets. These findings provide a deeper understanding of modality interaction in multimodal medical image segmentation and offer practical insights for future model design.currentcurrentarXiv (Atom API + RSS)T1highdeterministic

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crosscurrentcurrentarXiv (Atom API + RSS)T1highdeterministic

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2609.02663currentcurrentarXiv (Atom API + RSS)T1highdeterministic

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Ziquan Liu, Zhewei Zhu, Xuyang ShicurrentcurrentarXiv (Atom API + RSS)T1highdeterministic

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cs.CV, cs.AIcurrentcurrentarXiv (Atom API + RSS)T1highdeterministic

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https://arxiv.org/pdf/2609.02663currentcurrentarXiv (Atom API + RSS)T1highdeterministic

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cs.CVcurrentcurrentarXiv (Atom API + RSS)T1highdeterministic

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11 Sept 2026currentcurrentarXiv (Atom API + RSS)T1highdeterministic

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