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Minimum resolution requirements of digital pathology images for accurate classification

Lydia Neary‐Zajiczek, Linas Beresna, Benjamin Razavi, Vijay Pawar, Michael Shaw, Danail Stoyanov

2023Medical Image Analysis13 citationsDOIOpen Access PDF

Abstract

Digitization of pathology has been proposed as an essential mitigation strategy for the severe staffing crisis facing most pathology departments. Despite its benefits, several barriers have prevented widespread adoption of digital workflows, including cost and pathologist reluctance due to subjective image quality concerns. In this work, we quantitatively determine the minimum image quality requirements for binary classification of histopathology images of breast tissue in terms of spatial and sampling resolution. We train an ensemble of deep learning classifier models on publicly available datasets to obtain a baseline accuracy and computationally degrade these images according to our derived theoretical model to identify the minimum resolution necessary for acceptable diagnostic accuracy. Our results show that images can be degraded significantly below the resolution of most commercial whole-slide imaging systems while maintaining reasonable accuracy, demonstrating that macroscopic features are sufficient for binary classification of stained breast tissue. A rapid low-cost imaging system capable of identifying healthy tissue not requiring human assessment could serve as a triage system for reducing caseloads and alleviating the significant strain on the current workforce.

Topics & Concepts

Digital pathologyComputer scienceArtificial intelligenceStaffingImage qualityTriageWorkflowTelepathologyImage resolutionClassifier (UML)Computer visionBinary classificationPattern recognition (psychology)Image (mathematics)TelemedicineMedicineSupport vector machineEconomic growthEmergency medicineDatabaseEconomicsHealth careNursingAI in cancer detectionRadiomics and Machine Learning in Medical ImagingCell Image Analysis Techniques
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