Gamma Putty dosimetric studies in electron beam

Aime M. Gloi
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Abstract

Traditionally, lead has been used for field shaping in megavoltage electron beams in radiation therapy. In this study, we analyze the dosimetric parameters of a nontoxic, high atomic number (Z = 83), bismuth-loaded material called Gamma Putty that is malleable and can be easily molded to any desired shape. First, we placed an ionization chamber at different depths in a solid water phantom under a Gamma Putty shield of thickness (t = 0, 3, 5, 10, 15, 20, and 25 mm, respectively) and measured the ionizing radiation on the central axis (CAX) for electron beam ranging in energies from 6 to 20 MeV. Next, we investigated the relationship between the relative ionization (RI) measured at a fixed depth for several Gamma Putty shield at different cutout diameters ranging from 2 to 5 cm for various beam energies and derived an exponential fitting equation for clinical purposes. The dose profiles along the CAX show that bremsstrahlung dominates for Gamma Putty thickness >15 mm. For high-energy beams (12-20 MeV) and all Gamma Putty thicknesses up to 25 mm, RI below 5% could not be achieved due to the strong bremsstrahlung component. However, Gamma Putty is a very suitable material for reducing the transmission factor below 5% and protecting underlying normal tissues for low-energy electron beams (6-9 MeV).
电子束中伽马腻子剂量学研究
传统上,铅被用于在放射治疗中的超高压电子束的场整形。在这项研究中,我们分析了一种无毒、高原子序数(Z = 83)、铋负载材料Gamma腻子的剂量学参数,这种材料具有延展性,可以很容易地塑造成任何所需的形状。首先,在伽玛腻子屏蔽层(t分别为0、3、5、10、15、20和25 mm)下,我们将电离室放置在固体水模体的不同深度,并测量了能量为6至20 MeV的电子束在中心轴(CAX)上的电离辐射。接下来,我们研究了几种Gamma腻子屏蔽在固定深度测量的相对电离(RI)之间的关系,在不同的切口直径范围从2到5厘米,不同的光束能量,并推导了一个指数拟合方程,用于临床目的。沿CAX方向的剂量分布表明,当γ腻子厚度>15 mm时,韧致辐射占主导地位。对于高能光束(12-20 MeV)和所有Gamma腻子厚度达25 mm,由于强韧致辐射成分,RI无法达到5%以下。然而,Gamma腻子是一种非常合适的材料,可以将透射系数降低到5%以下,并在低能量电子束(6-9 MeV)下保护底层正常组织。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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