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Whole slide images based cancer survival prediction using attention guided deep multiple instance learning networks.

Authors :
Yao, Jiawen
Zhu, Xinliang
Jonnagaddala, Jitendra
Hawkins, Nicholas
Huang, Junzhou
Source :
Medical Image Analysis. Oct2020, Vol. 65, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

• A Whole Slide Images-based survival model is proposed which doesn't need ROI annotations. • The proposed model is more adaptive and flexible than recent WSI-based survival learning approaches. • The proposed approach has better interpretability in locating important patterns that contribute to accurate cancer survival predictions. Traditional image-based survival prediction models rely on discriminative patch labeling which make those methods not scalable to extend to large datasets. Recent studies have shown Multiple Instance Learning (MIL) framework is useful for histopathological images when no annotations are available in classification task. Different to the current image-based survival models that limit to key patches or clusters derived from Whole Slide Images (WSIs), we propose Deep Attention Multiple Instance Survival Learning (DeepAttnMISL) by introducing both siamese MI-FCN and attention-based MIL pooling to efficiently learn imaging features from the WSI and then aggregate WSI-level information to patient-level. Attention-based aggregation is more flexible and adaptive than aggregation techniques in recent survival models. We evaluated our methods on two large cancer whole slide images datasets and our results suggest that the proposed approach is more effective and suitable for large datasets and has better interpretability in locating important patterns and features that contribute to accurate cancer survival predictions. The proposed framework can also be used to assess individual patient's risk and thus assisting in delivering personalized medicine. Image, graphical abstract [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13618415
Volume :
65
Database :
Academic Search Index
Journal :
Medical Image Analysis
Publication Type :
Academic Journal
Accession number :
145412224
Full Text :
https://doi.org/10.1016/j.media.2020.101789