English

All-In-One Medical Image Restoration via Task-Adaptive Routing

Computer Vision and Pattern Recognition 2024-07-01 v2

Abstract

Although single-task medical image restoration (MedIR) has witnessed remarkable success, the limited generalizability of these methods poses a substantial obstacle to wider application. In this paper, we focus on the task of all-in-one medical image restoration, aiming to address multiple distinct MedIR tasks with a single universal model. Nonetheless, due to significant differences between different MedIR tasks, training a universal model often encounters task interference issues, where different tasks with shared parameters may conflict with each other in the gradient update direction. This task interference leads to deviation of the model update direction from the optimal path, thereby affecting the model's performance. To tackle this issue, we propose a task-adaptive routing strategy, allowing conflicting tasks to select different network paths in spatial and channel dimensions, thereby mitigating task interference. Experimental results demonstrate that our proposed \textbf{A}ll-in-one \textbf{M}edical \textbf{I}mage \textbf{R}estoration (\textbf{AMIR}) network achieves state-of-the-art performance in three MedIR tasks: MRI super-resolution, CT denoising, and PET synthesis, both in single-task and all-in-one settings. The code and data will be available at \href{https://github.com/Yaziwel/All-In-One-Medical-Image-Restoration-via-Task-Adaptive-Routing.git}{https://github.com/Yaziwel/AMIR}.

Keywords

Cite

@article{arxiv.2405.19769,
  title  = {All-In-One Medical Image Restoration via Task-Adaptive Routing},
  author = {Zhiwen Yang and Haowei Chen and Ziniu Qian and Yang Yi and Hui Zhang and Dan Zhao and Bingzheng Wei and Yan Xu},
  journal= {arXiv preprint arXiv:2405.19769},
  year   = {2024}
}

Comments

This article has been early accepted by MICCAI 2024