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使用放射性色迹胶片进行生物辐照剂量测定。

Dosimetry of biological irradiations using radiochromic films.

机构信息

Executive Administration for Radiation Protection and Safety, Medical Devices Sector, Saudi Food and Drug Authority, Riyadh, Saudi Arabia.

出版信息

Phys Med Biol. 2013 May 21;58(10):3177-89. doi: 10.1088/0031-9155/58/10/3177. Epub 2013 Apr 19.

Abstract

Delivering accurate radiation dose to blood specimens during biological irradiations is essential in quantifying damage of ionizing radiation. To estimate dose to blood samples as accurately as possible, pieces of EBT2 model GAFCHROMIC™ film were placed within an approximately 10 mm finely ground rice layer that was used to simulate test specimens inside 40 mL plastic flasks. Irradiations of flasks were carried out using an X-RAD 320 irradiator with a beam quality of 320 kVp and a measured half value layer of 1.12 mm Cu, in air and in a full scattering setup which consisted of either rice or Solid Water™ (SW) surrounding flasks, filled to the same level at top of the flasks, together with a 5 cm thick SW slab beneath them. Outputs, per cent depth doses and beam profiles at different depths were measured and compared between setups. For the same setting, the dose delivered to the middle flask under the full scattering setup is 22% larger than with the in-air setup at the depth of the specimen and 9.2% more homogeneous across the specimen thickness of 10 mm (2.3% variation in comparison to the surface). Rice showed a fairly similar performance to SW within 1% at the same depth of 10 mm. Experimental setup based on full scattering conditions was shown to provide faster, more homogenous and fairly uniform dose delivery to biological specimens in comparison to conventionally used in-air setups.

摘要

在生物辐照过程中向血液样本提供准确的辐射剂量对于量化电离辐射的损伤至关重要。为了尽可能准确地估计血液样本的剂量,将 EBT2 型 GAFCHROMIC™胶片的小块放置在大约 10 毫米精细研磨的米粒层内,该米粒层用于模拟 40 毫升塑料瓶内的测试样本。使用 X-RAD 320 辐照器对瓶进行辐照,辐照器的光束质量为 320 kVp,测量的半值层为 1.12 毫米 Cu,在空气中和全散射设置中进行辐照,全散射设置由环绕瓶的米粒或固体水(SW)组成,填充至与瓶顶平齐,下方有一个 5 厘米厚的 SW 平板。在不同设置下测量和比较了输出、百分深度剂量和不同深度的光束轮廓。对于相同的设置,在样本深度处,全散射设置下中间瓶的剂量比空气设置下大 22%,在整个 10 毫米样本厚度上更均匀(与表面相比变化 2.3%)。在相同的 10 毫米深度下,与 SW 相比,米粒的性能相当相似,误差在 1%以内。与传统的空气设置相比,基于全散射条件的实验设置显示出对生物样本更快、更均匀和相当均匀的剂量输送。

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