English

Clinically-Grounded Counterfactual Reasoning for Medical Video Diagnosis

Computer Vision and Pattern Recognition 2026-05-27 v1

Abstract

Medical video diagnosis involves inferring clinical decisions from dynamic tissue responses throughout examination processes. Existing methods rely on an end-to-end learning paradigm that i) focuses on appearance rather than pathology, ii) lacks clinical priors, and iii) reasons solely from observations without counterfactual comparison. This work introduces MedVCR, a counterfactual reasoning framework that mimics clinical diagnostic thinking. MedVCR comprises three components: a Counterfactual Generator that synthesizes tissue evolution under specified pathological states via a diffusion-based manner; a Counterfactual Representation Learning module that encodes diagnostic knowledge through clinical rules (i.e., temporal consistency, pathological separability, and counterfactual alignment); and a Dual Diagnostic Prediction strategy that integrates video-level assessment with frame-level counterfactual analysis. MedVCR is evaluated under both fully supervised (e.g., colposcopy) and weakly supervised (e.g., colonoscopy) video diagnosis settings, yielding 2.6%-10.2% performance gains compared with leading baselines. Comprehensive ablation studies further validate the effectiveness of each component. The code will be released.

Keywords

Cite

@article{arxiv.2605.26483,
  title  = {Clinically-Grounded Counterfactual Reasoning for Medical Video Diagnosis},
  author = {Jianzhe Gao and Churan Wang and Weiyi Zhang and Jianghua Li and Li-An Li and Wenguan Wang and Yixin Zhu and Yizhou Wang},
  journal= {arXiv preprint arXiv:2605.26483},
  year   = {2026}
}