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双头符合相机进行18F-FDG检测的临床价值:综述

The clinical value of 18F-FDG detection with a dual-head coincidence camera: a review.

作者信息

Ak I, Blokland J A, Pauwels E K, Stokkel M P

机构信息

Department of Nuclear Medicine, Osmangazi University, Medical Faculty, Eskisehir, Turkey.

出版信息

Eur J Nucl Med. 2001 Jun;28(6):763-78.

Abstract

Positron emission tomography (PET) has evolved into a technique that can accurately determine the distribution of positron-emitting radionuclides. The addition of a coincidence detection mode to a standard dual-head detector system has resulted in the option of single-photon and annihilation coincidence detection. This new device for imaging fluorine-18 2-fluoro-2-deoxy-D-glucose (18F-FDG) accumulation in neoplasms became commercially available in 1994. Besides conventional low-energy imaging in the collimated single-photon mode, it offers a relatively inexpensive opportunity to perform uncollimated PET by switching to the coincidence acquisition mode. This review summarises the clinical value of 18F-FDG detection with a dual-head coincidence camera in oncology. The results are compared with the overall results obtained using dedicated PET scanners. With respect to head and neck tumours, 18F-FDG coincidence mode gamma camera imaging (CGI) yields results that are in agreement with those obtained with dedicated PET scanners. With regard to other malignancies, such as lung cancer, lymphoma and brain tumours, data in the literature are too scarce to draw any definite conclusions. In general, the results of 18F-FDG CGI in tumours >15 mm seem to be comparable to those obtained with dedicated PET scanners, whereas in tumours <15 mm, the relative sensitivity of 18F-FDG CGI is approximately 80%. Using attenuation correction, the diagnostic yield of 18F-FDG CGI may increase. However, further clinical investigation is required to definitely establish its value in staging primary disease, therapy monitoring and assessment of tumour recurrence in clinical oncology.

摘要

正电子发射断层扫描(PET)已发展成为一种能够精确测定正电子发射放射性核素分布的技术。在标准双头探测器系统中增加符合探测模式,实现了单光子探测和湮灭符合探测两种选择。这种用于成像肿瘤中氟-18 2-氟-2-脱氧-D-葡萄糖(18F-FDG)蓄积情况的新设备于1994年上市。除了在准直单光子模式下进行传统的低能成像外,通过切换到符合采集模式,它还提供了一种相对廉价的进行非准直PET检查的机会。这篇综述总结了使用双头符合相机进行18F-FDG检测在肿瘤学中的临床价值。将结果与使用专用PET扫描仪获得的总体结果进行了比较。对于头颈部肿瘤,18F-FDG符合模式γ相机成像(CGI)所得到的结果与使用专用PET扫描仪获得的结果一致。对于其他恶性肿瘤,如肺癌、淋巴瘤和脑肿瘤,文献中的数据太少,无法得出任何明确结论。一般来说,对于直径>15 mm的肿瘤,18F-FDG CGI的结果似乎与使用专用PET扫描仪获得的结果相当,而对于直径<15 mm的肿瘤,18F-FDG CGI的相对灵敏度约为80%。使用衰减校正后,18F-FDG CGI的诊断效能可能会提高。然而,需要进一步的临床研究来明确其在临床肿瘤学中对原发性疾病分期、治疗监测和肿瘤复发评估的价值。

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