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18F-FDG与11C-蛋氨酸在PET引导下胶质瘤立体定向脑活检中的比较。

Comparison of 18F-FDG and 11C-methionine for PET-guided stereotactic brain biopsy of gliomas.

作者信息

Pirotte Benoit, Goldman Serge, Massager Nicolas, David Philippe, Wikler David, Vandesteene Arlette, Salmon Isabelle, Brotchi Jacques, Levivier Marc

机构信息

Department of Neurosurgery, Erasme Hospital, Université Libre de Bruxelles, Brussels, Belgium.

出版信息

J Nucl Med. 2004 Aug;45(8):1293-8.

Abstract

UNLABELLED

We compared the contributions of the labeled tracers (11)C-methionine (Met) and (18)F-FDG for PET-guided stereotactic biopsy of brain gliomas.

METHODS

In 32 patients with glioma, stereotactic Met PET and (18)F-FDG PET were integrated in the planning of stereotactic brain biopsy. PET images were analyzed to determine which tracer offered the best information for target definition. The stereotactic coregistration of PET images allowed accurate comparison of the level, distribution, and extent of uptake for both tracers according to tumor location and grade.

RESULTS

A histologic diagnosis was obtained for all patients. All gliomas had an area of abnormal Met uptake, and 27 showed abnormal (18)F-FDG uptake. (18)F-FDG was used for target selection when its uptake was higher in tumor than in gray matter (14 gliomas). Seven were in the basal ganglia or brain stem. Met was used for target selection when there was no (18)F-FDG uptake or when (18)F-FDG uptake was equivalent to that in the gray matter (18 gliomas). Thirteen were in the cortex. Sixty-one of the 70 stereotactic trajectories obtained from the 32 patients were based on PET-defined targets and had an area of abnormal Met uptake. These 61 Met-positive trajectories always yielded a diagnosis of tumor. All nondiagnostic trajectories (n = 9) were obtained in areas with no increased uptake of Met. In all patients with increased uptake of both tracers, the focus of highest Met uptake corresponded to the focus of highest (18)F-FDG uptake. However, the extent of uptake of both tracers was variable.

CONCLUSION

Distributions of highest Met and (18)F-FDG uptake are similar in brain gliomas. Because Met provides a more sensitive signal, it is the molecule of choice for single-tracer PET-guided neurosurgical procedures in gliomas.

摘要

未标记

我们比较了标记示踪剂(11)C-蛋氨酸(Met)和(18)F-FDG在PET引导下脑胶质瘤立体定向活检中的作用。

方法

在32例胶质瘤患者中,立体定向Met PET和(18)F-FDG PET被纳入立体定向脑活检计划。分析PET图像以确定哪种示踪剂为靶区定义提供最佳信息。PET图像的立体定向配准允许根据肿瘤位置和分级准确比较两种示踪剂的摄取水平、分布和范围。

结果

所有患者均获得组织学诊断。所有胶质瘤均有Met摄取异常区域,27例显示(18)F-FDG摄取异常。当肿瘤中(18)F-FDG摄取高于灰质时(14例胶质瘤),使用(18)F-FDG进行靶区选择。7例位于基底节或脑干。当没有(18)F-FDG摄取或(18)F-FDG摄取与灰质相当时(18例胶质瘤),使用Met进行靶区选择。13例位于皮质。从32例患者获得的70条立体定向轨迹中有61条基于PET定义的靶区,且有Met摄取异常区域。这61条Met阳性轨迹总能得出肿瘤诊断。所有未诊断出的轨迹(n = 9)均在Met摄取未增加的区域获得。在两种示踪剂摄取均增加的所有患者中,Met摄取最高的区域与(18)F-FDG摄取最高的区域相对应。然而,两种示踪剂的摄取范围是可变的。

结论

脑胶质瘤中Met和(18)F-FDG摄取最高的分布相似。由于Met提供更敏感的信号,它是胶质瘤单示踪剂PET引导神经外科手术的首选分子。

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