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用于常规临床应用的正电子标记放射性药物的串联范德格拉夫加速器生产。

Tandem Van de Graaff accelerator production of positron labeled radiopharmaceuticals for routine clinical use.

作者信息

Jones S C, Robinson G D, McIntyre E

出版信息

Int J Appl Radiat Isot. 1984 Aug;35(8):721-9. doi: 10.1016/0020-708x(84)90078-4.

Abstract

This paper describes a facility to produce positron labeled radiopharmaceuticals with a tandem Van de Graaff accelerator. 11C labeled carbon monoxide (11CO), 15O labeled H2O (H2 15O) and 18F labeled 2-deoxy-2-fluoro-D-glucose ([18F]2FDG), were chosen so that physiological measurements of cerebral blood volume, cerebral blood flow, and the cerebral metabolic rate for glucose could be made routinely in our PET center. This facility uses a tandem Van de Graaff accelerator which is relatively remote from the clinical area. Measurements of radionuclide yield and beam penetration showed that it was feasible to deliver sufficient amounts of radioactivity for the measurements. Both 11CO and H2 15O presented significant delivery problems due to their shorter half-lives. For H2 15O a continuous delivery system for water vapour and an infusion system for the administration of H2 15O in saline were designed and constructed. 11CO and [18F]2FDG were hand carried. This facility has demonstrated that a tandem Van de Graaff accelerator can routinely supply a PET center with adequate quantities of these three radiopharmaceuticals.

摘要

本文介绍了一种利用串联范德格拉夫加速器生产正电子标记放射性药物的设备。选择了11C标记的一氧化碳(11CO)、15O标记的水(H2 15O)和18F标记的2-脱氧-2-氟-D-葡萄糖([18F]2FDG),以便在我们的正电子发射断层扫描(PET)中心常规进行脑血容量、脑血流量和脑葡萄糖代谢率的生理测量。该设备使用的串联范德格拉夫加速器距离临床区域相对较远。放射性核素产率和束流穿透测量表明,为测量提供足够量的放射性是可行的。由于11CO和H2 15O半衰期较短,它们都存在显著的输送问题。对于H2 15O,设计并构建了水蒸气连续输送系统和在盐水中注入H2 15O的输注系统。11CO和[18F]2FDG是人工携带的。该设备已证明,串联范德格拉夫加速器可以常规地为PET中心提供足够量的这三种放射性药物。

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