人工智能
计算机科学
迭代重建
计算机视觉
医学影像学
适应(眼睛)
扩散
图像(数学)
分布(数学)
模式识别(心理学)
数学
物理
光学
热力学
数学分析
作者
Riccardo Barbano,Alexander Denker,Hyungjin Chung,Tae Hoon Roh,Simon Arridge,Peter Maaß,Bangti Jin,Jong Chul Ye
标识
DOI:10.1109/tmi.2024.3524797
摘要
Denoising diffusion models have emerged as the go-to generative framework for solving inverse problems in imaging. A critical concern regarding these models is their performance on out-of-distribution tasks, which remains an under-explored challenge. Using a diffusion model on an out-of-distribution dataset, realistic reconstructions can be generated, but with hallucinating image features that are uniquely present in the training dataset. To address this discrepancy and improve reconstruction accuracy, we introduce a novel test-time adaptation sampling framework called Steerable Conditional Diffusion. Specifically, this framework adapts the diffusion model, concurrently with image reconstruction, based solely on the information provided by the available measurement. Utilising the proposed method, we achieve substantial enhancements in out-of-distribution performance across diverse imaging modalities, advancing the robust deployment of denoising diffusion models in real-world applications.
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