Mukherjee Bhaskar, Gholami Yaser H, Bhonsle Uday, Hentschel Reinhard, Khachan Joseph
1 Detector and Sensor Group, West German Proton Therapy Centre Essen (WPE), Essen, Germany.
2 Department of Medical Physics, School of Physics (A28), The University of Sydney, Sydney, NSW, Australia.
Br J Radiol. 2015;88(1056):20150035. doi: 10.1259/bjr.20150035. Epub 2015 Oct 6.
To develop an alpha dosimetry technique for activity calibration of alpha-emitting radiopharmaceuticals using the Gafchromic(®) EBT3 (Gaf-EBT3) radiochromic film (International Speciality product, Wayne, NJ).
The Gaf-EBT3 has a tissue equivalent radiosensitive layer (approximately 28 μm) sandwiched between two 100-μm thick polyester sheaths, thereby making it insensitive to alpha particles. We have split a Gaf-EBT3 sheet using a surgical scalpel to remove one of the polyester protective layers and covered the radiosensitive layer with thin Mylar(®) foil (Goodfellow Cambridge Limited, Huntingdon, UK) (2.5 μm). Small pieces of modified film were exposed at contact with a 560-Bq thin (241)Am source for 5, 10, 24 and 94 h. The optical density of the films was evaluated using an optical densitometer. The alpha energy spectra of the (241)Am source were recorded using a Si(Li) surface barrier detector.
Time-integrated specific alpha surface activity (kBq cm(-2) h) was represented as a function of optical density.
By removing one of the 100 μm thick polyester protective layers, the authors have modified the Gaf-EBT3 film to a sensitive alpha dosemeter. The calibration function relevant to a (241)Am reference source was evaluated from the optical densities of the dosemeter foils. Furthermore, calibration functions for important alpha emitters such as (223)Ra, (225)Ac or (210)Bi were parameterized from the (241)Am reference data.
The authors have developed and tested the principle of a clinical alpha dosemeter using Gaf-EBT3 radiochromic films originally developed for photon dosimetry. This novel, user-friendly technique could be implemented in quality assurance and calibration procedures of important alpha-emitting radiopharmaceuticals prior to their clinical applications.
利用Gafchromic(®)EBT3(Gaf-EBT3)放射变色薄膜(国际特殊产品公司,新泽西州韦恩市)开发一种用于校准发射α粒子的放射性药物活度的α剂量测定技术。
Gaf-EBT3有一个组织等效的辐射敏感层(约28μm)夹在两个100μm厚的聚酯护套之间,因此它对α粒子不敏感。我们用手术刀将一张Gaf-EBT3薄膜切开,去掉其中一个聚酯保护层,并用薄聚酯薄膜(Goodfellow剑桥有限公司,英国亨廷顿)(2.5μm)覆盖辐射敏感层。将小块改性薄膜与一个560 Bq的薄(241)Am源接触曝光5、10、24和94小时。使用光密度计评估薄膜的光密度。用Si(Li)表面势垒探测器记录(241)Am源的α能谱。
时间积分比α表面活度(kBq cm-2 h)表示为光密度的函数。
通过去掉100μm厚的聚酯保护层之一,作者将Gaf-EBT3薄膜改造成了一个灵敏的α剂量计。根据剂量计箔片的光密度评估了与(241)Am参考源相关的校准函数。此外,根据(241)Am参考数据对重要的α发射体如(223)Ra、(225)Ac或(210)Bi的校准函数进行了参数化。
作者开发并测试了一种临床α剂量计的原理,该剂量计使用最初为光子剂量测定而开发的Gaf-EBT3放射变色薄膜。这种新颖、用户友好的技术可用于重要的发射α粒子的放射性药物临床应用前的质量保证和校准程序。