Instituto de Física Enrique Gaviola (IFEG), CONICET, Córdoba, Argentina; Laboratorio de Investigación e Instrumentación en Física Aplicada a la Medicina e Imágenes por Rayos X, FAMAF-UNC, Córdoba, Argentina.
Laboratorio de Investigación e Instrumentación en Física Aplicada a la Medicina e Imágenes por Rayos X, FAMAF-UNC, Córdoba, Argentina; Departamento de Fśica, Universidad Nacional, Heredia, Costa Rica.
Phys Med. 2021 Apr;84:41-49. doi: 10.1016/j.ejmp.2021.03.002. Epub 2021 Apr 7.
Dosimetry of ionizing radiation quantifies the energy deposited by an incident beam to the medium. This study presents the relative response of two types of gel dosimeters describing their differences by estimating radiation chemical yields produced in water radiolysis.
Two types of gel dosimeter were used, namely an acid ferrous ion solution infused with xylenol orange known as Fricke gel and a polymer gel based on acrylamide and N,N'-methylenebis(acrylamide) known as PAGAT. Samples were irradiated using two photon beam energies, one from a conventional X-ray tube operated at 44 kV and the other one from a LINAC operated at 6 MV. The dosimeters were analyzed by optical absorbance and magnetic resonance imaging. Additionally, the linear energy transfer of each beam was calculated using Monte Carlo simulations for further estimation of the radiation chemical yields produced during water radiolysis.
Obtained results for both gel dosimeters indicate that their response at 44 kV and 6 MV are different, regardless of the read-out technique. On average, the sensitivity at 44 kV was found to be 65 % of the response at 6 MV. The calculated radiation chemical yields are in agreement with the observed experimental results.
The main reason for the difference in the response of the dosimeters may be related to the linear energy transfer of each photon beam, which varies the production of primary chemical species during water radiolysis.
电离辐射剂量学量化了入射束在介质中沉积的能量。本研究通过估计水辐射分解中产生的辐射化学产率,介绍了两种类型的凝胶剂量计的相对响应,描述了它们的差异。
使用了两种类型的凝胶剂量计,即注入二甲苯酚橙的亚铁离子溶液,称为 Fricke 凝胶,以及基于丙烯酰胺和 N,N'-亚甲基双丙烯酰胺的聚合物凝胶,称为 PAGAT。样品分别用双光子束能量照射,一个来自于 44 kV 运行的常规 X 射线管,另一个来自于 6 MV 运行的 LINAC。通过光学吸光度和磁共振成像分析对剂量计进行了分析。此外,还使用蒙特卡罗模拟计算了每个光束的线性能量传递,以进一步估计水辐射分解过程中产生的辐射化学产率。
两种凝胶剂量计的结果均表明,它们在 44 kV 和 6 MV 下的响应不同,无论采用哪种读出技术。平均而言,在 44 kV 下的灵敏度发现为 6 MV 下响应的 65%。计算出的辐射化学产率与观察到的实验结果一致。
剂量计响应差异的主要原因可能与每个光子束的线性能量传递有关,这会改变水辐射分解过程中主要化学物质的产生。