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Clinical Validation of Artificial Intelligence-Augmented Pathology Diagnosis Demonstrates Significant Gains in Diagnostic Accuracy in Prostate Cancer Detection

  • Patricia Raciti
  • , Jillian Sue
  • , Juan A. Retamero
  • , Rodrigo Ceballos
  • , Ran Godrich
  • , Jeremy D. Kunz
  • , Adam Casson
  • , Dilip Thiagarajan
  • , Zahra Ebrahimzadeh
  • , Julian Viret
  • , Donghun Lee
  • , Peter J. Schüffler
  • , George DeMuth
  • , Emre Gulturk
  • , Christopher Kanan
  • , Brandon Rothrock
  • , Jorge Reis-Filho
  • , David S. Klimstra
  • , Victor Reuter
  • , Thomas J. Fuchs
  • Paige
  • Stat One (DeMuth)
  • Weill Cornell Medical College

Research output: Contribution to journalArticlepeer-review

87 Scopus citations

Abstract

Context.-Prostate cancer diagnosis rests on accurate assessment of tissue by a pathologist. The application of artificial intelligence (AI) to digitized whole slide images (WSIs) can aid pathologists in cancer diagnosis, but robust, diverse evidence in a simulated clinical setting is lacking. Objective.-To compare the diagnostic accuracy of pathologists reading WSIs of prostatic biopsy specimens with and without AI assistance. Design.-Eighteen pathologists, 2 of whom were genitourinary subspecialists, evaluated 610 prostate needle core biopsy WSIs prepared at 218 institutions, with the option for deferral. Two evaluations were performed sequentially for each WSI: initially without assistance, and immediately thereafter aided by Paige Prostate (PaPr), a deep learning-based system that provides a WSI-level binary classification of suspicious for cancer or benign and pinpoints the location that has the greatest probability of harboring cancer on suspicious WSIs. Pathologists' changes in sensitivity and specificity between the assisted and unassisted modalities were assessed, together with the impact of PaPr output on the assisted reads. Results.-Using PaPr, pathologists improved their sensitivity and specificity across all histologic grades and tumor sizes. Accuracy gains on both benign and cancerous WSIs could be attributed to PaPr, which correctly classified 100% of the WSIs showing corrected diagnoses in the PaPr-assisted phase. Conclusions.-This study demonstrates the effectiveness and safety of an AI tool for pathologists in simulated diagnostic practice, bridging the gap between computational pathology research and its clinical application, and resulted in the first US Food and Drug Administration authorization of an AI system in pathology.

Original languageEnglish
Pages (from-to)1178-1185
Number of pages8
JournalArchives of Pathology and Laboratory Medicine
Volume147
Issue number10
DOIs
StatePublished - Oct 2023
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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