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Use of MRI-ultrasound Fusion to Achieve Targeted Prostate Biopsy
Published on: April 9, 2019
Reproducibility and Accuracy of the PRIMARY Score on PSMA PET and of PI-RADS on Multiparametric MRI for Prostate
Louise Emmett1,2,3, Nathan Papa2, William Counter4
1Department of Theranostics and Nuclear Medicine, St. Vincent's Hospital Sydney, Sydney, New South Wales, Australia; louise.emmett@svha.org.au.
Abstract:
The PRIMARY score is a 5-category scale developed to identify clinically significant intraprostate malignancy (csPCa) on 68Ga-prostate-specific membrane antigen (PSMA)-11 PET/CT (68Ga-PSMA PET) using a combination of anatomic site, pattern, and intensity. Developed within the PRIMARY trial, the score requires evaluation in external datasets. This study aimed to assess the reproducibility and diagnostic accuracy of the PRIMARY score in a cohort of patients who underwent multiparametric MRI (mpMRI) and 68Ga-PSMA PET before prostate biopsy for the diagnosis of prostate cancer. Methods: In total, data from 242 men who had undergone 68Ga-PSMA PET and mpMRI before transperineal prostate biopsy were available for this ethics-approved retrospective study. 68Ga-PSMA PET and mpMRI data were centrally collated in a cloud-based deidentified image database. Six experienced prostate-focused nuclear medicine specialists were trained (1 h) in applying the PRIMARY score with 30 sample images. Six radiologists experienced in prostate mpMRI read images as per the Prostate Imaging-Reporting and Data System (PI-RADS), version 2.1. All images were read (with masking of clinical information) at least twice, with discordant findings sent to a masked third (or fourth) reader as necessary. Cohen κ was determined for both imaging scales as 5 categories and then collapsed to binary (negative and positive) categories (score 1 or 2 vs. 3, 4, or 5). Diagnostic performance parameters were calculated, with an International Society of Urological Pathology grade group of at least 2 (csPCa) on biopsy defined as the gold standard. Combined-imaging-positive results were defined as any PI-RADS score of 4 or 5 or as a PI-RADS score of 1-3 with a PRIMARY score of 3-5. Results: In total, 227 patients with histopathology, 68Ga-PSMA PET, and mpMRI imaging before prostate biopsy were included; 33% had no csPCa, and 67% had csPCa. Overall interrater reliability was higher for the PRIMARY scale (κ = 0.70) than for PI-RADS (κ = 0.58) when assessed as a binary category (benign vs. malignant). This was similar for all 5 categories (κ = 0.65 vs. 0.48). Diagnostic performance to detect csPCa was comparable between PSMA PET and mpMRI (sensitivity, 86% vs. 89%; specificity, 76% vs. 74%; positive predictive value, 88% vs. 88%; negative predictive value, 72% vs. 76%). Using combined imaging, sensitivity was 94%, specificity was 68%, positive predictive value was 86%, and negative predictive value was 85%. Conclusion: The PRIMARY score applied by first-user nuclear medicine specialists showed substantial interrater reproducibility, exceeding that of PI-RADS applied by mpMRI-experienced radiologists. Diagnostic performance was similar between the 2 modalities. The PRIMARY score should be considered when interpreting intraprostatic PSMA PET images.
Insights
The PRIMARY score demonstrates higher reproducibility than PI-RADS for identifying prostate cancer on 68Ga-PSMA PET scans. This nuclear medicine imaging tool shows comparable diagnostic performance to MRI for detecting clinically significant prostate cancer.
Area of Science:
- Nuclear Medicine Imaging
- Radiology
- Uro-oncology
Background:
- The PRIMARY score was developed to identify clinically significant intraprostate malignancy (csPCa) on 68Ga-prostate-specific membrane antigen (PSMA)-11 PET/CT (68Ga-PSMA PET).
- External validation of the PRIMARY score is necessary to assess its utility in clinical practice.
Purpose of the Study:
- To evaluate the reproducibility and diagnostic accuracy of the PRIMARY score.
- To compare the PRIMARY score's performance against the Prostate Imaging-Reporting and Data System (PI-RADS) version 2.1.
- To assess the diagnostic performance of 68Ga-PSMA PET and multiparametric MRI (mpMRI) in detecting csPCa.
Main Methods:
- A retrospective study included 242 men who underwent 68Ga-PSMA PET and mpMRI before prostate biopsy.
- Six nuclear medicine specialists and six radiologists independently assessed the imaging data using the PRIMARY score and PI-RADS, respectively.
- Interrater reliability (Cohen κ) and diagnostic performance parameters were calculated, with csPCa (International Society of Urological Pathology grade group ≥2) as the gold standard.
Main Results:
- Interrater reliability for the PRIMARY score (κ = 0.70 binary, κ = 0.65 five-category) was higher than for PI-RADS (κ = 0.58 binary, κ = 0.48 five-category).
- Diagnostic performance for csPCa detection was comparable between 68Ga-PSMA PET and mpMRI (sensitivity 86% vs. 89%; specificity 76% vs. 74%).
- Combined imaging analysis demonstrated a sensitivity of 94% and specificity of 68% for detecting csPCa.
Conclusions:
- The PRIMARY score exhibits substantial interrater reproducibility among nuclear medicine specialists, surpassing that of PI-RADS for mpMRI-experienced radiologists.
- 68Ga-PSMA PET and mpMRI show similar diagnostic performance for detecting csPCa.
- The PRIMARY score is a valuable tool for interpreting intraprostate 68Ga-PSMA PET images.

