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首页> 外文期刊>Medical Physics >Determination of absorbed dose in water at the reference point d(r0, theta0) for an 192Ir HDR brachytherapy source using a Fricke system.
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Determination of absorbed dose in water at the reference point d(r0, theta0) for an 192Ir HDR brachytherapy source using a Fricke system.

机译:使用Fricke系统确定192Ir HDR近距离放射治疗源在参考点d(r0,theta0)的水中吸收剂量。

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A ring-shaped Fricke device was developed to measure the absolute dose on the transverse bisector of a 192Ir high dose rate (HDR) source at 1 cm from its center in water, D(r0, theta0). It consists of a polymethylmethacrylate (PMMA) rod (axial axis) with a cylindrical cavity at its center to insert the 192Ir radioactive source. A ring cavity around the source with 1.5 mm thickness and 5 mm height is centered at 1 cm from the central axis of the source. This ring cavity is etched in a disk shaped base with 2.65 cm diameter and 0.90 cm thickness. The cavity has a wall around it 0.25 cm thick. This ring is filled with Fricke solution, sealed, and the whole assembly is immersed in water during irradiations. The device takes advantage of the cylindrical geometry to measure D(r0, theta0). Irradiations were performed with a Nucletron microselectron HDR unit loaded with an 192Ir Alpha Omega radioactive source. A Spectronic 1001 spectrophotometer was used to measure the optical absorbance using a 1 mL quartz cuvette with 1.00 cm light pathlength. The PENELOPE Monte Carlo code (MC) was utilized to simulate the Fricke device and the 192Ir Alpha Omega source in detail to calculate the perturbation introduced by the PMMA material. A NIST traceable calibrated well type ionization chamber was used to determine the air-kerma strength, and a published dose-rate constant was used to determine the dose rate at the reference point. The time to deliver 30.00 Gy to the reference point was calculated. This absorbed dose was then compared to the absorbed dose measured by the Fricke solution. Based on MC simulation, the PMMA of the Fricke device increases the D(r0, theta0) by 2.0%. Applying the corresponding correction factor, the D(r0, theta0) value assessed with the Fricke device agrees within 2.0% with the expected value with a total combined uncertainty of 3.43% (k=1). The Fricke device provides a promising method towards calibration of brachytherapy radiation sources in terms of D(r0, theta0) and audit HDR source calibrations.
机译:开发了一种环形Fricke装置,以在距水中心D(r0,theta0)1 cm处测量192Ir高剂量率(HDR)源的横向平分线的绝对剂量。它由一个聚甲基丙烯酸甲酯(PMMA)棒(轴向)组成,该棒的中心有一个圆柱形腔体,用于插入192Ir放射源。放射源周围的环形腔,厚度为1.5毫米,高度为5毫米,距放射源中心轴1厘米。该环形腔在直径为2.65厘米,厚度为0.90厘米的圆盘形基底中被蚀刻。空腔周围有0.25厘米厚的壁。该环装有Fricke溶液,密封,在辐照期间将整个组件浸入水中。该设备利用圆柱几何形状来测量D(r0,theta0)。用装有192Ir Alpha Omega放射源的Nucletron微选择电子HDR装置进行辐照。使用Spectronic 1001分光光度计,使用光程为1.00 cm的1 mL石英比色皿测量吸光度。利用PENELOPE蒙特卡洛代码(MC)来详细模拟Fricke装置和192Ir Alpha Omega源,以计算PMMA材料引入的扰动。使用NIST可溯源的校准井式电离室确定空气比释动能强度,并使用已发布的剂量率常数确定参考点的剂量率。计算了将30.00 Gy传递到参考点的时间。然后将该吸收剂量与弗里克溶液测得的吸收剂量进行比较。基于MC仿真,Fricke设备的PMMA将D(r0,theta0)提高了2.0%。应用相应的校正因子,用Fricke设备评估的D(r0,theta0)值与预期值相差2.0%以内,总合并不确定度为3.43%(k = 1)。 Fricke设备提供了一种有前途的方法,可以根据D(r0,theta0)和近距HDR源校准来校准近距离放射治疗源。

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