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首页> 外文期刊>Abdominal radiology. >Improvement of prostate cancer detection combining a computer-aided diagnostic system with TRUS-MRI targeted biopsy
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Improvement of prostate cancer detection combining a computer-aided diagnostic system with TRUS-MRI targeted biopsy

机译:具有TRUS-MRI靶向活检的计算机辅助诊断系统与前列腺癌检测的改进

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Purpose: To validate a novel consensus method, called target-in-target, combining human analysis of mpMRI with automated CAD system analysis, with the aim to increasing the prostate cancer detection rate of targeted biopsies. Methods: A cohort of 420 patients was enrolled and 253 patients were rolled out, due to exclusion criteria. 167 patients, underwent diagnostic 3T MpMRI. Two expert radiologists evaluated the exams adopting PI-RADSv2 and CAD system. When a CAD target overlapped with a radiologic one, we performed the biopsy in the overlapping area which we defined as target-in-target. Targeted TRUS-MRI fusion biopsy was performed in 63 patients with a total of 212 targets. The MRI data of all targets were quantitatively analyzed, and diagnostic findings were compared to pathologist's biopsy reports. Results: CAD system diagnostic performance exhibited sensitivity and specificity scores of 55.2% and 74.1% [AUC = 0.63 (0.54 + 0.71)] , respectively. Human readers achieved an AUC value, in ROC analysis, of 0.71 (0.63 -h 0.79). The target-in-target method provided a detection rate per targeted biopsy core of 81.8 % vs. a detection rate per targeted biopsy core of 68.6 % for pure PI-RADS based on target definitions. The higher per-core detection rate of the target-in-target approach was achieved irrespective of the presence of technical flaws and artifacts. Conclusions: A novel consensus method combining human reader evaluation with automated CAD system analysis of mpMRI to define prostate biopsy targets was shown to improve the detection rate per biopsy core of TRUS-MRI fusion biopsies. Results suggest that the combination of CAD system analysis and human reader evaluation is a winning strategy to improve targeted biopsy efficiency.
机译:目的:验证一种新的共识方法,称为目标目标,将MPMRI与自动化CAD系统分析相结合,旨在提高靶向活组织检查的前列腺癌检测率。方法:注册了420名患者的群组,由于排除标准,撤出了253名患者。 167例患者,经过诊断3T MPMRI。两个专家放射科医师评估了采用PI-Radsv2和CAD系统的考试。当与放射学人重叠的CAD目标时,我们在我们定义为目标的重叠区域中进行活组织检查。有针对性的TRUS-MRI融合活组织检查在63名患者中进行,共212例。所有靶标的MRI数据都是定量分析的,并且将诊断结果与病理学家的活检报告进行比较。结果:CAD系统诊断性能分别表现出55.2%和74.1%[AUC = 0.63(0.54 + 0.71)]的敏感性和特异性分数。人类读者在ROC分析中实现了AUC值,0.71(0.63 -H 0.79)。目标靶标方法提供了每次靶向活检核的检出率为81.8%与目标活组织检查的检出率为68.6%,对于纯PI-γ基于目标定义。无论技术缺陷和伪影的存在如何,都可以实现目标靶向方法的较高的每核检测率。结论:一种新的共识方法,将人类读者评估与MPMRI自动化CAD系统分析结合以定义前列腺活检靶标,提高了TRUS-MRI融合活组织检查的每种活组织检查核的检出率。结果表明,CAD系统分析和人类读者评价的组合是一种提高有针对性活检效率的胜利策略。

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