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首页> 外文期刊>Physics in medicine and biology. >Measurement of the absorbed dose distribution near an 192Ir intravascular brachytherapy seed using a high-spatial-resolution gel dosimetry system
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Measurement of the absorbed dose distribution near an 192Ir intravascular brachytherapy seed using a high-spatial-resolution gel dosimetry system

机译:使用高空间分辨率凝胶剂量测定系统测量192Ir血管内近距离放射治疗种子附近的吸收剂量分布

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The absorbed dose distribution at sub-millimeter distances from the Best single 192Ir intravascular brachytherapy seed was measured using a high-spatial-resolution gel dosimetry system. Two gel phantoms from the same batch were used; one for the seed irradiation and one for calibration. Since the response of this gel is energy independent for photons between 20 and 1250 keV, the gel was calibrated using a narrowly collimated 60Co gamma-ray beam (cross-sectional area 1cm 2). A small format laser computed tomography scanner was used to acquire the data. The measurements were carried out with a spatial resolution of 100 m in all dimensions. The seed was calibrated at NIST in terms of air-kerma strength. The absorbed dose rate as well as the radial dose function, g L(r), was measured for radial distances between 0.6 and 12.6 mm from the seed center. The dose rate constant was measured, yielding a value of Λ = (1.122 ± 0.032) cGy h 1U 1, which agrees with published data within the measurement uncertainty. For distances between 0.6 and 1.5 mm, g L(r) decreases from a maximum value of 1.06 down to 1.00; between 1.5 and 6.7 mm, an enhancement is clearly observed with a maximum value around 1.24 and beyond 6.7 mm, g L(r) has an approximately constant value around 1.0, which suggests that this seed can be considered as a point source only at distances larger than 6.7 mm. This latter observation agrees with data for the same seed reported previously using Gafchromic film MD-55-2. Additionally, published Monte Carlo (MC) calculations have predicted the observed behavior of the radial dose function resulting from the absorbed dose contributions of beta particles and electrons emitted by the 192Ir seed. Nonetheless, in the enhancement region, MC underestimates the dose by approximately 20%. This work suggests that beta particles and electrons emitted from the seed make a significant contribution to the total absorbed dose delivered at distances near the seed center (less than 6 mm) and therefore cannot be neglected, given the dimensions of blood vessel walls.
机译:使用高空间分辨率凝胶剂量测定系统测量距Best Single 192Ir血管内近距离放射治疗种子的亚毫米距离处的吸收剂量分布。使用了来自同一批次的两个凝胶体模。一种用于种子辐照,另一种用于校准。由于该凝胶的响应对于20到1250 keV之间的光子是能量无关的,因此使用狭窄准直的60Co伽马射线束(横截面积1cm 2)对凝胶进行了校准。使用小型激光计算机断层扫描仪获取数据。在所有维度上以100 m的空间分辨率进行测量。将种子的气生比强度通过NIST进行校准。在距种子中心0.6至12.6 mm的径向距离处测量吸收剂量率以及径向剂量函数g L(r)。测量剂量率常数,得出Λ=(1.122±0.032)cGy h 1U 1的值,该值与测量不确定度内的已公开数据一致。对于0.6到1.5 mm之间的距离,g L(r)从最大值1.06减小到1.00;在1.5到6.7 mm之间,可以清楚地观察到增强,最大值在1.24附近,超过6.7 mm,g L(r)在1.0左右具有近似恒定的值,这表明该种子只能在一定距离处被视为点源。大于6.7毫米。后一观察结果与先前使用加菲发色膜MD-55-2报道的相同种子的数据一致。此外,已发表的蒙特卡洛(MC)计算已经预测了径向剂量函数的观察到的行为,这是由于β粒子和192Ir种子发射的电子的吸收剂量贡献所致。但是,在增强区域,MC低估了剂量约20%。这项工作表明,从种子发出的β粒子和电子对在种子中心附近(小于6毫米)的距离处传递的总吸收剂量做出了重大贡献,因此,考虑到血管壁的大小,因此不能忽略。

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