A semi-supervised learning approach for bladder cancer grading

被引:8
|
作者
Wenger, Kenneth [1 ]
Tirdad, Kayvan [1 ]
Cruz, Alex Dela [1 ]
Mari, Andrea [2 ]
Basheer, Mayada [3 ]
Kuk, Cynthia [4 ]
van Rhijn, Bas W. G. [5 ]
Zlotta, Alexandre R. [4 ]
van der Kwast, Theodorus H. [3 ]
Sadeghian, Alireza [1 ]
机构
[1] Toronto Metropolitan Univ, Fac Sci, Dept Comp Sci, Toronto, ON, Canada
[2] Univ Florence, Careggi Hosp, Dept Urol, San Luca Nuovo, Florence, Italy
[3] Toronto Gen Hosp, Dept Pathol, Toronto, ON, Canada
[4] Sinai Hlth Syst, Dept Surg, Urol, Toronto, ON, Canada
[5] Netherlands Canc Inst, Antoni van Leeuwenhoek Hosp, Dept Surg Oncol Urol, Amsterdam, Netherlands
来源
关键词
Artificial intelligence; Deep learning; Semi-supervised learning; Pathology; Medical digital imaging; ARTIFICIAL-INTELLIGENCE; PROSTATE-CANCER; NEURAL-NETWORKS; CLASSIFICATION; IMAGES; DIAGNOSIS; PATHOLOGY; BIOPSIES;
D O I
10.1016/j.mlwa.2022.100347
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
Recent advances in semi-supervised learning algorithms (SSL) have made great strides in reducing the training dependency on labeled datasets and requiring that only a subset of the data be labeled. The presented work explores a class of semi-supervised learning algorithms that uses consistency regularization and self-ensembling to leverage the unlabeled portion of the dataset. Labeling medical image datasets are time-consuming and prohibitively expensive, requiring hundreds of hours of effort from expert diagnosticians. This research presents an approach for building and training a deep learning model to grade medical images while requiring only a minimal number of labels. Consistency regularization has been used in SSL to great success in datasets of natural images but not for more complex images such as pathology slides where the dataset consists of cell patterns. This research successfully proposes and applies an SSL algorithm based on the VGG-16 neural network, which combines techniques introduced by the Pi model and FixMatch algorithms to a cell patternbased pathology image dataset. The results presented in this research show that using the proposed approach, it is possible to label only 3% of the samples in a dataset, use the remaining 97% of samples as unlabeled data, and achieve a 19% increase over the baseline accuracy. The second contribution of this research shows a ratio of labeled vs. unlabeled images in a dataset beyond which continuing to label the data increases the cost but offers little performance gains.
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收藏
页数:10
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