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首页> 外文期刊>Medical Physics >Dosimetric characteristics of a linear array of gamma or beta-emitting seeds in intravascular irradiation: Monte Carlo studies for the AAPM TG-43/60 formalism.
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Dosimetric characteristics of a linear array of gamma or beta-emitting seeds in intravascular irradiation: Monte Carlo studies for the AAPM TG-43/60 formalism.

机译:血管内辐射中线性排列的发射gamma或β的种子的剂量学特征:AAPM TG-43 / 60形式主义的蒙特卡罗研究。

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摘要

In principle, the AAPM TG-43/60 formalism for intravascular brachytherapy (IVBT) dosimetry of catheter-based sources is fully valid with a single seed of cylindrical symmetry and in the region comparable to or larger than the mean-free path of emitting radiation. However, for the geometry of a linear array of seeds within the few millimeter range of interest in IVBT, the suitability of the AAPM TG-43/60 formalism has not been fully addressed yet. We have meticulously investigated the dosimetric characteristics of catheter-based gamma (192Ir) and beta (90Sr/Y) sources using Monte Carlo methods before applying the AAPM TG-43/60 formalism. The dosimetric perturbation due to radiation interactions with neighboring seeds is at most 2% over the entire region of interest for the 192Ir source, while it increases to about 5% for the 90Sr/Y source. As the transaxial distance (y) increases beyond 3 mm, the sum of the dose contributions from neighboring seeds exceeds the dose contribution from the center seed for both sources. However, it continues to increase with the increasing y for 192Ir but is saturated beyond y = 5 mm for 9Sr/Y. Even within a few millimeters from the seeds, the dose from the low-energy betas of 192Ir is still less than 1% of the total dose. The radial dose and anisotropy functions are reformulated in reduced cylindrical coordinate with the reference point at y = 2 mm. The dose rate constant of 192Ir and the dose rate of 90Sr/Y at the reference point showed a fairly good agreement (within +/- 2%) with earlier studies and the NIST-traceable value, respectively. We conclude that the dosimetric perturbation caused by close proximity of neighboring seeds is nearly negligible so that the AAPM TG-43/60 formalism can be applied to a linear array of seeds.
机译:原则上,用于导管内源的血管内近距离放射治疗(IVBT)剂量的AAPM TG-43 / 60形式对于圆柱形对称的单个种子并且在等于或大于平均无辐射路径的区域内完全有效。但是,对于IVBT感兴趣的几毫米范围内的种子线性阵列的几何形状,AAPM TG-43 / 60形式主义的适用性尚未得到充分解决。在应用AAPM TG-43 / 60形式之前,我们已经使用蒙特卡洛方法仔细研究了基于导管的γ(192Ir)和β(90Sr / Y)源的剂量学特征。对于192Ir辐射源,由于与相邻种子发生辐射相互作用而引起的剂量扰动在整个目标区域中至多为2%,而对于90Sr / Y辐射源,则增加到大约5%。当跨轴距离(y)增加到超过3 mm时,对于两个源,相邻种子的剂量贡献之和超过中心种子的剂量贡献。但是,对于192Ir,它会随着y的增加而继续增加,但对于9Sr / Y,它会超出y = 5 mm。即使距离种子只有几毫米,来自192Ir的低能β的剂量仍不到总剂量的1%。径向剂量和各向异性函数在还原的圆柱坐标系中重新设定,参考点位于y = 2 mm。 192Ir的剂量率常数和参考点的90Sr / Y的剂量率分别与早期研究和NIST可追踪值显示出相当好的一致性(+/- 2%以内)。我们得出的结论是,由邻近种子的紧密接近所引起的剂量扰动几乎可以忽略不计,因此AAPM TG-43 / 60形式学可以应用于种子的线性阵列。

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