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使用全立体角探测器通过符合方法对18F进行标准化。

Standardisation of 18F by a coincidence method using full solid angle detectors.

作者信息

Nedjadi Youcef, Bailat Claude, Caffari Yvan, Bochud François

机构信息

Institut de Radiophysique Appliquée, Lausanne, Switzerland.

出版信息

Appl Radiat Isot. 2010 Jul-Aug;68(7-8):1309-13; discussion 1313. doi: 10.1016/j.apradiso.2010.01.008. Epub 2010 Jan 13.

Abstract

A solution of (18)F was standardised with a 4pibeta-4pigamma coincidence counting system in which the beta detector is a one-inch diameter cylindrical UPS89 plastic scintillator, positioned at the bottom of a well-type 5''x5'' NaI(Tl) gamma-ray detector. Almost full detection efficiency-which was varied downwards electronically-was achieved in the beta-channel. Aliquots of this (18)F solution were also measured using 4pigamma NaI(Tl) integral counting and Monte Carlo calculated efficiencies as well as the CIEMAT-NIST method. Secondary measurements of the same solution were also performed with an IG11 ionisation chamber whose equivalent activity is traceable to the Système International de Référence through the contribution IRA-METAS made to it in 2001; IRA's degree of equivalence was found to be close to the key comparison reference value (KCRV). The (18)F activity predicted by this coincidence system agrees closely with the ionisation chamber measurement and is compatible within one standard deviation of the other primary measurements. This work demonstrates that our new coincidence system can standardise short-lived radionuclides used in nuclear medicine.

摘要

用一个4πβ-4πγ符合计数系统对(18)F溶液进行标准化,其中β探测器是一个直径为1英寸的圆柱形UPS89塑料闪烁体,位于一个5英寸×5英寸井型碘化钠(铊)γ射线探测器的底部。在β通道中实现了几乎完全的探测效率,该效率可通过电子方式向下变化。还使用4πγ碘化钠(铊)积分计数、蒙特卡罗计算效率以及CIEMAT-NIST方法对该(18)F溶液的等分试样进行了测量。还用一个IG11电离室对同一溶液进行了二次测量,其等效活度通过IRA-METAS在2001年对其的贡献可追溯到国际单位制;发现IRA的等效度接近关键比对参考值(KCRV)。该符合系统预测的(18)F活度与电离室测量结果非常吻合,并且在其他主要测量的一个标准偏差范围内是兼容的。这项工作表明,我们的新符合系统可以对核医学中使用的短寿命放射性核素进行标准化。

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