Learning Directional Semantic Transitions for Longitudinal Chest X-ray Analysis

June 14, 2026 ยท Grace Period ยท ๐Ÿ› MICCAI 2026

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Authors Zhangfeng Hu, Zefan Yang, Ge Wang, Tanveer Syeda-Mahmood, Anushree Burade, Mannudeep Kalra, Pingkun Yan arXiv ID 2606.15938 Category cs.CV: Computer Vision Cross-listed cs.MM Citations 0 Venue MICCAI 2026
Abstract
Chest X-ray (CXR) interpretation often requires longitudinal comparison to assess disease progression. Existing approaches typically rely on temporal feature fusion or inter-study discrepancy modeling, yet remain limited in capturing subtle progression semantics and overlook the inherently directional nature of disease trajectories. In this paper, we propose ProTrans, a novel vision-language pretraining framework that formulates disease progression as a directional semantic transition between paired CXR studies. ProTrans leverages radiology reports to anchor individual CXR representations within interpretable disease states, and introduces a learnable progression feature map to explicitly encode semantic shifts between states, aligned with report-derived progression descriptions. To enforce direction-aware perception, ProTrans incorporates a reversed temporal modeling process and imposes bidirectional reconstruction consistency across states and transitions, thereby disentangling directional semantics and promoting coherent trajectory modeling. Extensive experiments on longitudinal downstream tasks, including disease progression classification and progression captioning, demonstrate that ProTrans consistently outperforms existing methods, establishing a unified pretraining framework for longitudinal CXR understanding. https://github.com/RPIDIAL/ProTrans
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