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March 4, 2026Journal of Clinical Oncology0 citations

Micro-ultrasound compared with MRI-targeted biopsy in detecting clinically significant prostate cancer: Systematic review and meta-analysis.

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CSCaio Vinícius SuartzUniversidade de São PauloJMJosé Pedro Cassemiro MicheletoUniversidade de São PauloTSTallys Ávila SuzukiUniversidade de São Paulo

Key Points

  • The study aims to compare the effectiveness and accuracy of micro-ultrasound-targeted biopsy versus MRI-targeted biopsy in detecting clinically significant prostate cancer.
  • Systematic searches of MEDLINE, Embase, and ClinicalTrials.gov were conducted.
  • Included studies compared microUS-TBx and MRI-TBx in adults who underwent prostate biopsy.
  • Primary endpoint focused on per-patient detection of clinically significant prostate cancer.
  • Sensitivity and specificity of each method were also assessed using a meta-analysis approach.
  • Micro-US-TBx detected 2,194 cases of clinically significant prostate cancer, while MRI-TBx detected 2,237 cases.
  • The pooled detection ratio for Micro-US versus MRI was 0.99, indicating comparable detection rates.
  • Sensitivity and specificity for Micro-US-TBx were 0.86 and 0.38, respectively, while MRI-TBx had 0.84 sensitivity and 0.40 specificity.

Abstract

318 Background: Prostate cancer is highly prevalent, and diagnostic pathways must maximize detection of clinically significant disease (csPCa) while minimizing overdiagnosis and resource burden. Micro-ultrasound (microUS) offers real-time, high-resolution lesion targeting and could reduce reliance on pre-biopsy MRI. We compared csPCa detection and diagnostic accuracy between microUS-targeted biopsy (microUS-TBx) and MRI-targeted biopsy (MRI-TBx). Methods: Systematic searches of MEDLINE (PubMed), Embase, and ClinicalTrials.gov were completed on July 4, 2025 and updated Aug 5, 2025. Eligible studies directly compared microUS-TBx with MRI-TBx in adults undergoing prostate biopsy and reported csPCa (typically ISUP ≥2). Primary endpoint: per-patient csPCa detection. Secondary endpoints: sensitivity and specificity for csPCa. Random-effects meta-analysis (Hartung-Knapp) estimated detection ratios (microUS/MRI); heterogeneity was summarized with I². Diagnostic accuracy was synthesized using a bivariate random-effects model. Prespecified analyses included biopsy-naïve status, use of concomitant systematic cores, and risk of bias (QUADAS-2). PROSPERO registration pending at submission. Results: Twenty-two studies (including one randomized trial) were included. Micro-US-TBx detected 2,194 csPCa cases; MRI-TBx detected 2,237. The pooled detection ratio (Micro-US vs MRI) was 0.99 (95% CI, 0.88–1.11; I² = 78.5%), indicating comparable yield. Pooled sensitivity/specificity were 0.86/0.38 for Micro-US-TBx and 0.84/0.40 for MRI-TBx. Heterogeneous biopsy triggers (e.g., PI-RADS ≥3 only vs biopsy-all) and frequent use of concomitant systematic biopsy introduced spectrum and partial verification/incorporation biases, which may shift detection rates, limit generalizability to routine care, and obscure standalone modality accuracy. Conclusions: Micro-US-TBx demonstrated csPCa detection and diagnostic accuracy comparable to MRI-TBx. Given potential advantages in access and cost, MicroUS is a viable alternative for integration into prostate cancer diagnostic pathways, particularly in resource-limited settings.

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Cite This Study

Suartz et al. (2026) studied this question.

synapsesocial.com/papers/69a7ccb2d48f933b5eed8708https://doi.org/10.1200/jco.2026.44.7_suppl.318
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