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Potential value of dual-time-point 18F-FDG PET compared with initial single-time-point imaging in differentiating malignant from benign pulmonary nodules: A systematic review and meta-analysis

机译:双时点18F-FDG PET与初始单时点成像相比在区分恶性和良性肺结节中的潜力:系统评价和荟萃分析

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We performed a meta-analysis to assess the potential value of dual-time-point (DTP) imaging as compared with initial single-time-point (STP) scanning with F-fluorodeoxyglucose (F-FDG) PET in differentiating malignant from benign single pulmonary nodules. Data on the performance of DTP F-FDG PET imaging in assessing lung nodules were extracted from articles of prospective or retrospective original research published between January 2001 and April 2010. The Quality Assessment of Diagnostic Accuracy Studies (QUADAS) tool was used to assess the quality of study methodology. Heterogeneity in the results of the studies was assessed, and summary receiver operating characteristic (SROC) curves were constructed. Eleven studies comprising a total of 788 patients who underwent initial scanning, 778 of whom also underwent DTP imaging, were included in the final analysis. The quality of study methodology was judged to be moderate. Substantial heterogeneity in the results of the studies, with inconsistency (I) index values above 85%, reflected important differences in study methods and populations, including varying lesion sizes, F-FDG avidity, uptake interval for delayed imaging, and threshold for positive result on DTP imaging. SROC curve analysis revealed a statistically nonsignificant trend toward higher sensitivity with DTP imaging, at moderate levels of specificity, when compared with initial STP scanning. The area under the curve (SE) values for DTP and initial STP imaging were 0.839 (0.079) and 0.757 (0.074), respectively. Although the results of our analysis do not support the routine use of DTP imaging with F-FDG PET in the differential diagnosis of pulmonary nodules, this technique may provide additional information in selected cases with equivocal results from initial scanning. Further prospective research is required to better define the potential benefits of DTP F-FDG PET imaging.
机译:我们进行了荟萃分析,以评估与使用F-氟代脱氧葡萄糖(F-FDG)PET进行的初始单时间点(STP)扫描相比,双时间点(DTP)成像在区分恶性和良性肿瘤方面的潜在价值肺结节。 DTP F-FDG PET成像评估肺结节的性能数据摘自2001年1月至2010年4月发表的前瞻性或回顾性原始研究文章。使用诊断准确性研究质量评估(QUADAS)工具评估质量研究方法论。评估了研究结果中的异质性,并绘制了摘要接收器工作特性(SROC)曲线。最终分析包括11项研究,共788例接受了初次扫描的患者,其中778例也接受了DTP成像。研究方法的质量被判断为中等。研究结果中的大量异质性,(I)指数值高于85%,反映了研究方法和人群的重要差异,包括病变大小,F-FDG亲和力,延迟成像的摄取间隔和阳性结果阈值的变化在DTP成像上。 SROC曲线分析显示,与初始STP扫描相比,在中等水平的特异性下,DTP成像具有更高的敏感性,但在统计学上无明显趋势。 DTP和初始STP成像的曲线下(SE)值区域分别为0.839(0.079)和0.757(0.074)。尽管我们的分析结果不支持在肺结节的鉴别诊断中常规使用DTP成像和F-FDG PET进行鉴别,但该技术可能在某些病例中提供额外的信息,这些病例的初始扫描结果含糊不清。为了更好地确定DTP F-FDG PET成像的潜在优势,需要进行进一步的前瞻性研究。

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