人工智能
分割
计算机科学
体素
模式识别(心理学)
编码(集合论)
班级(哲学)
监督学习
图像分割
医学影像学
相似性(几何)
图像(数学)
深度学习
人工神经网络
计算机视觉
集合(抽象数据类型)
程序设计语言
作者
Wenhui Lei,Qi Su,Tianyu Jiang,Ran Gu,Na Wang,Xinglong Liu,Guotai Wang,Xiaofan Zhang,Shaoting Zhang
标识
DOI:10.1109/tmi.2023.3294975
摘要
Deep neural networks typically require accurate and a large number of annotations to achieve outstanding performance in medical image segmentation. One-shot and weakly-supervised learning are promising research directions that reduce labeling effort by learning a new class from only one annotated image and using coarse labels instead, respectively. In this work, we present an innovative framework for 3D medical image segmentation with one-shot and weakly-supervised settings. Firstly a propagation-reconstruction network is proposed to propagate scribbles from one annotated volume to unlabeled 3D images based on the assumption that anatomical patterns in different human bodies are similar. Then a multi-level similarity denoising module is designed to refine the scribbles based on embeddings from anatomical- to pixel-level. After expanding the scribbles to pseudo masks, we observe the miss-classified voxels mainly occur at the border region and propose to extract self-support prototypes for the specific refinement. Based on these weakly-supervised segmentation results, we further train a segmentation model for the new class with the noisy label training strategy. Experiments on three CT and one MRI datasets show the proposed method obtains significant improvement over the state-of-the-art methods and performs robustly even under severe class imbalance and low contrast. Code is publicly available at https://github.com/LWHYC/OneShot_WeaklySeg.
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