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ProDiv: Prototype-driven consistent pseudo-bag division for whole-slide image classification

delete2024-06-01
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Pei Liu
L
Luping Ji *
DOI:10.1016/j.cmpb.2024.108161delete
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Abstract

Abstract

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Background and Objective: Pathology image classification is one of the most essential auxiliary processes in cancer diagnosis. To overcome the problem of inadequate Whole -Slide Image (WSI) samples with weak labels, pseudo -bag -based multiple instance learning (MIL) methods have attracted wide attention in pathology image classification. In this type of method, the division scheme of pseudo -bags is usually a primary factor affecting classification performance. In order to improve the division of WSI pseudo -bags on existing random/clustering approaches, this paper proposes a new Prototype -driven Division (ProDiv) scheme for the pseudo -bag -based MIL classification framework on pathology images. Methods: This scheme first designs an attention -based method to generate a bag prototype for each slide. On this basis, it further groups WSI patch instances into a series of instance clusters according to the feature similarities between the prototype and patches. Finally, pseudo -bags are obtained by randomly combining the non -overlapping patch instances of different instance clusters. Moreover, the design scheme of our ProDiv considers practicality, and it could be smoothly assembled with almost all the MIL -based WSI classification methods in recent years. Results: Empirical results show that our ProDiv, when integrated with several existing methods, can deliver classification AUC improvements of up to 7.3% and 10.3%, respectively on two public WSI datasets. Conclusions: ProDiv could almost always bring obvious performance improvements to compared MIL models on typical metrics, which suggests the effectiveness of our scheme. Experimental visualization also visually interprets the correctness of the proposed ProDiv.
Keywords:
Computational pathology
Whole-slide image classification
Multiple instance learning
Patch instance
Pseudo-bag division
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Journal

Computer Methods and Programs in Biomedicine cover
Computer Methods and Programs in Biomedicine
IF:
4.8
Papers:
6.9K
Citations:
2.1W

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