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双时相18F-FDG PET显像用于肿瘤良恶性鉴别诊断
引用本文:石芳,于金明,付政,孙新东,杨国仁,韩安勤.双时相18F-FDG PET显像用于肿瘤良恶性鉴别诊断[J].中华核医学杂志,2007,27(4):227-229.
作者姓名:石芳  于金明  付政  孙新东  杨国仁  韩安勤
作者单位:1. 山东省肿瘤医院放疗科,济南,250117
2. 山东省肿瘤医院PET-CT中心,济南,250117
摘    要:目的探讨双时相^18F-FDG PET显像在肿瘤良恶性鉴别中的临床价值。方法52例单次显像难以鉴别病变性质的患者行双时相全身^18 F-FDG PET/CT显像,将显像结果与病理学检查结果对照。结果43例延迟显像SUV升高的患者中有39例经病理检查证实为恶性病变,4例为良性病变;9例延迟显像SUV降低的患者中有7例经病理检查证实为良性病变,2例为恶性病变。灵敏度为95.1%,准确性为88.5%,特异性为63.6%,阳性预测值为90.7%,阴性预测值为7/9例。结论双时相^18F—FDG PET对良恶性病变的鉴别具有较高的灵敏度和准确性。

关 键 词:肿瘤  诊断  鉴别  体层摄影术  发射型计算机  脱氧葡萄糖
修稿时间:2006-12-17

Dual phase 18F-FDG PET imaging in the differential diagnosis of malignant and benign lesions
SHI Fang, YU Jin-ming, FU Zheng,et al..Dual phase 18F-FDG PET imaging in the differential diagnosis of malignant and benign lesions[J].Chinese Journal of Nuclear Medicine,2007,27(4):227-229.
Authors:SHI Fang  YU Jin-ming  FU Zheng  
Institution:Department of Radiation Ontology, Sharutong Cancer Hospital and Institute, Sharutong 250117, China
Abstract:Objective It was realized that static PET imaging might not be accurate at fixed time point after ^18 F-FDG administration. The dual phase ^18 F-FDG PET was employed in this study in order to differentiate malignant from benign lesions. Methods Fifty-two patients with difficulty in interpreting the nature of their lesions at routine imaging underwent delayed whole body ^18F-FDG PET at 2 h post-injection. Visual inspection of PET images and SUV compared with pathological finding were used for evaluation. Results Of 43 cases with increased SUV in delay imaging, 39 were confirmed/nalignant and 4 benign. And 7 of 9 cases with decreased SUV were confirmed benign and 2 malignant. The dual phase PET imaging in this group of patients had sensitivity of 95.1%, specificity 63.6%, accuracy 88.5%, positive predictive value 90.7%, and negative predictive value 7/9. Conclusion In differentiating malignant from benign lesions, dual phase PET was more accurate than single static imaging.
Keywords:Neoplasms  Diagnosis  differential  Tomography  emission-computed  Deoxyglucose
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