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Deep‐Learning‐Based Artificial Intelligence for <scp>PI‐RADS</scp> Classification to Assist Multiparametric Prostate <scp>MRI</scp> Interpretation: A Development Study

Thomas Sanford, Stephanie A. Harmon, Evrim Türkbey, Deepak Kesani, Sena Tuncer, Manuel Madariaga, Chris Yang, Jonathan Sackett, Sherif Mehralivand, Pingkun Yan, Sheng Xu, Bradford J. Wood, Maria J. Merino, Peter A. Pinto, Peter L. Choyke, Barış Türkbey

2020Journal of Magnetic Resonance Imaging87 citationsDOIOpen Access PDF

Abstract

BACKGROUND: The Prostate Imaging Reporting and Data System (PI-RADS) provides guidelines for risk stratification of lesions detected on multiparametric MRI (mpMRI) of the prostate but suffers from high intra/interreader variability. PURPOSE: To develop an artificial intelligence (AI) solution for PI-RADS classification and compare its performance with an expert radiologist using targeted biopsy results. STUDY TYPE: Retrospective study including data from our institution and the publicly available ProstateX dataset. POPULATION: In all, 687 patients who underwent mpMRI of the prostate and had one or more detectable lesions (PI-RADS score >1) according to PI-RADSv2. FIELD STRENGTH/SEQUENCE: -weighted series were obtained at 3.0T. ASSESSMENT: /ADC/high-b value segmentations were stacked and saved as JPEGs. These images were used to train a convolutional neural network (CNN). The PI-RADS scores obtained by the CNN were compared with radiologist scores. The cancer detection rate was measured from a subset of patients who underwent biopsy. STATISTICAL TESTS: Agreement between the AI and the radiologist-driven PI-RADS scores was assessed using a kappa score, and differences between categorical variables were assessed with a Wald test. RESULTS: For the 1034 detection lesions, the kappa score for the AI system vs. the expert radiologist was moderate, at 0.40. However, there was no significant difference in the rates of detection of clinically significant cancer for any PI-RADS score in 86 patients undergoing targeted biopsy (P = 0.4-0.6). DATA CONCLUSION: We developed an AI system for assignment of a PI-RADS score on segmented lesions on mpMRI with moderate agreement with an expert radiologist and a similar ability to detect clinically significant cancer. LEVEL OF EVIDENCE: 4 TECHNICAL EFFICACY STAGE: 2.

Topics & Concepts

Multiparametric MRIComputer scienceProstateArtificial intelligenceInterpretation (philosophy)RadiomicsMedicineInternal medicineCancerProgramming languageProstate Cancer Diagnosis and TreatmentAdvanced Radiotherapy TechniquesMRI in cancer diagnosis
Deep‐Learning‐Based Artificial Intelligence for <scp>PI‐RADS</scp> Classification to Assist Multiparametric Prostate <scp>MRI</scp> Interpretation: A Development Study | Litcius