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Silver fluorescent x-ray yield and its influence on the dose rate constant for nine low-energy brachytherapy source models.

机译:九种低能量近距离放射治疗源模型的银荧光X射线产量及其对剂量率常数的影响。

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The physical characteristics of the photons emitted by a low-energy brachytherapy source are strongly dependent on the source's construction. Aside from absorption and scattering caused by the internal structures and the source encapsulation, the photoelectric interactions occurred in certain type of source-construction materials can generate additional energetic characteristic x rays with energies different from those emitted by the bare radionuclide. As a result, the same radionuclide encapsulated in different source models can result in dose rate constants and other dosimetric parameters that are strikingly different from each other. The aim of this work was to perform a systematic study on the yield of silver fluorescent x rays produced in nine 125I sources that are known to contain silver and its impact on the dose-rate constant. Using a high-resolution germanium spectrometer, the relative 125I spectra emitted by the nine sources on its bisector were measured and found to be similar to each other (the maximum variation in the 125I-Kbeta relative intensity was less than 4%). On the other hand, the measured silver fluorescent x-ray spectra exhibited much greater variations from model to model; the maximum change in the measured Ag-Kalpha relative intensity was over 95%. This larger variation in the measured silver fluorescent x-ray yield was caused by (1) the different amount of silver that was directly exposed to the 125I radionuclide in different source models and (2) the stronger influence of the source's internal geometry on the silver fluorescent x rays. Because the addition of silver fluorescent x rays can significantly alter the photon characteristics emitted by the radioactive sources, a precise knowledge on the silver fluorescent x-ray yield is needed in theoretical calculations of the sources' intrinsic dosimetric properties. This study concludes that the differences in silver fluorescent yield are the primary causes of the variable dose rate constant observed among these source models.
机译:低能近距离放射治疗源发出的光子的物理特性在很大程度上取决于该源的结构。除了由内部结构和源封装引起的吸收和散射外,在某些类型的源构造材料中发生的光电相互作用还可以产生额外的高能特征X射线,其能量与裸核素所发射的能量不同。结果,封装在不同源模型中的相同放射性核素可能会导致剂量率常数和其他剂量参数互不相同。这项工作的目的是对已知包含银的9种125I光源产生的银荧光x射线的产率及其对剂量率常数的影响进行系统的研究。使用高分辨率锗光谱仪,测量了九等分线在其平分线上的相对125I光谱,发现它们彼此相似(125I-Kbeta相对强度的最大变化小于4%)。另一方面,测得的银荧光x射线光谱在模型之间表现出更大的变化。 Ag-Kalpha相对强度的最大变化超过95%。所测量的银荧光X射线产量的较大变化是由于(1)在不同源模型中直接暴露于125I放射性核素的银量不同以及(2)源内部几何结构对银的影响更大X射线荧光。由于添加银荧光X射线会显着改变放射源发出的光子特性,因此在理论计算源的固有剂量特性时需要对银荧光X射线产量有确切的了解。这项研究得出的结论是,在这些来源模型中观察到的银荧光产量差异是剂量率常数可变的主要原因。

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