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首页> 外文期刊>Medical Physics >Towards two-dimensional brachytherapy dosimetry using plastic scintillator: new highly efficient water equivalent plastic scintillator materials.
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Towards two-dimensional brachytherapy dosimetry using plastic scintillator: new highly efficient water equivalent plastic scintillator materials.

机译:使用塑料闪烁体的二维近距离放射剂量学:新型高效水当量塑料闪烁体材料。

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摘要

Plastic scintillator (PS) has been proposed for both one- and two-dimensional (1D and 2D) dose measurements for radiation therapy applications. For low-energy photon modalities (e.g., brachytherapy), an efficient water equivalent scintillator is needed. To perform 2D measurements, a high localization of the scintillation process is required. Guided by comparison of the mass energy absorption coefficients as a function of energy and of the dose distribution as a function of distance from the radioactive source, as modeled by Monte Carlo photon transport simulation, a small quantity of medium atomic number (Z) atoms (4% Cl) was incorporated in a polyvinyl toluene (PVT) based PS to approximate closely (within 10%) the radiological properties of water in the 20-662 keV energy range. However, the scintillation efficiency of commercial PS mixtures drops as much as 70% when loaded with high atomic number additives. We developed experimental techniques to assess the scintillation efficiency and locality of 15 new PS mixtures. These mixtures differ by the type of the scintillation dyes and the type of compound containing the medium Z atoms (chlorine). To achieve higher material stability, 4-chlorostyrene was used as a loading compound to ensure polymerization with the PVT base. Two of the new PS materials exhibited scintillation efficiencies within 30% of one of the most efficient commercially available products (BC-400), which is not water equivalent at such low energies. These new scintillator materials are promising candidates for the development of an accurate and efficient radiation dosimetry method not only for brachytherapy, but also for superficial and diagnostic applications.
机译:已提出塑料闪烁体(PS)用于放射治疗应用的一维和二维(1D和2D)剂量测量。对于低能光子形态(例如近距离放射治疗),需要一种有效的水当量闪烁体。为了执行2D测量,需要对闪烁过​​程进行高度定位。根据蒙特卡罗光子传输模拟的模型,通过比较作为能量函数的质量能吸收系数和作为距放射源距离的函数的剂量分布,比较了少量的中等原子数(Z)原子(将4%Cl)掺入到基于聚乙烯甲苯(PVT)的PS中,以接近(在10%之内)水在20-662 keV能量范围内的放射特性。然而,当载有高原子序数添加剂时,商用PS混合物的闪烁效率下降多达70%。我们开发了实验技术来评估15种新PS混合物的闪烁效率和局部性。这些混合物因闪烁染料的类型和含有中等Z原子(氯)的化合物的类型而异。为了获得更高的材料稳定性,使用4-氯苯乙烯作为填充剂以确保与PVT碱聚合。在一种最有效的市售产品(BC-400)的30%范围内,两种新的PS材料显示出的闪烁效率在30%以内,而在如此低的能量下,它与水不等价。这些新的闪烁体材料有望成为开发精确且有效的辐射剂量测定方法的候选人,这些方法不仅适用于近距离放射治疗,还适用于浅表和诊断应用。

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