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正电子发射断层扫描(PET)中使用的一些非标准正电子发射体的衰变数据和生成产率。

Decay data and production yields of some non-standard positron emitters used in PET.

作者信息

Qaim S M

机构信息

Institute of Nuclear Chemistry, Research Center Jülich GmbH, Jülich, Germany.

出版信息

Q J Nucl Med Mol Imaging. 2008 Jun;52(2):111-20. Epub 2008 Jan 5.

Abstract

The increasing significance of non-standard positron emission tomography (PET) nuclides in medicine is briefly outlined. The decay data of those radionuclides are generally well known, except for the positron emission intensity (Ibeta+) in a few cases. The recent precise measurements on the Ibeta+ values for (64)Cu, (76)Br, (120)I and (124)I are described. Some general aspects of cyclotron production of radionuclides are discussed. The need of some fundamental nuclear chemistry research with regard to the development of a new production route is demonstrated. An accurate knowledge of the excitation function of a nuclear reaction is essential to optimize the production route. The yield of a product calculated from the excitation function of a reaction gives the maximum achievable yield. Such yields are given for 24 radionuclides presently attracting attention. The experimental yields are always lower than the theoretical values, calling upon constant improvements in targetry and chemical processing procedures. Many of the non-standard PET nuclides, like (64)Cu, (86)Y, (94m)Tc, (124)I, etc. are produced in good yields at low energy cyclotrons while for production of some other radionuclides (e.g. 52Fe, 73Se, 83Sr, etc.) an intermediate energy cyclotron is required.

摘要

简要概述了非标准正电子发射断层扫描(PET)核素在医学中日益重要的意义。除少数情况外,这些放射性核素的衰变数据一般是已知的。描述了最近对(64)Cu、(76)Br、(120)I和(124)I的正电子发射强度(Ibeta+)的精确测量。讨论了放射性核素回旋加速器生产的一些一般方面。证明了在开发新的生产路线方面进行一些基础核化学研究的必要性。准确了解核反应的激发函数对于优化生产路线至关重要。根据反应的激发函数计算出的产物产率给出了可实现的最大产率。给出了目前受到关注的24种放射性核素的此类产率。实验产率总是低于理论值,这就需要不断改进靶材和化学处理程序。许多非标准PET核素,如(64)Cu、(86)Y、(94m)Tc、(124)I等,在低能回旋加速器中能以良好的产率生产,而生产其他一些放射性核素(如52Fe、73Se、83Sr等)则需要中能回旋加速器。

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