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用于高剂量率近距离放射治疗的192铱源的热释光剂量测定、二极管剂量测定和蒙特卡罗剂量测定。

TLD, diode and Monte Carlo dosimetry of an 192Ir source for high dose-rate brachytherapy.

作者信息

Kirov A s, Williamson J F, Meigooni A S, Zhu Y

机构信息

Radiation Oncology Center, Mallinckrodt Institute of Radiology, Washington University School of Medicine, St Louis, MO 63110, USA.

出版信息

Phys Med Biol. 1995 Dec;40(12):2015-36. doi: 10.1088/0031-9155/40/12/002.

Abstract

Very few dosimetry data are available for the current generation of high-dose-rate (HDR) 192Ir sources, which have broad application in remotely afterloaded brachytherapy. We have measured the two-dimensional dose rate distribution around a microSelectron-HDR source and used the results to validate Monte Carlo simulations. Thermoluminescent dosimeters (TLDs) in solid-water phantoms were used to measure the transverse-axis dose rates in the distance range 0.5-10 cm and the polar dose-rate profiles at 1.5, 3 and 5 cm distance from the source. At close distances, 2-40 mm from the HDR source, we performed transverse axis dose-rate measurements with a Si diode in water. We performed diode measurements at the same distances also for a pulsed dose-rate (PDR) source to compare the results for 192Ir sources with different encapsulation. Both the HDR and the PDR sources were decayed, separated from their cables and calibrated prior to the measurements. The measured dose rates were compared with Monte Carlo photon transport calculations, which realistically modelled the experimental and source geometry at each measurement point. Agreement between Monte Carlo photon transport absolute dose-rate calculations and measurements was, on average, within 5%. From the transverse-axis experimental data, we deduced a value for the dose-rate constant lambda 0 of 192Ir HDR sources of 1.14 cGy h-1 U-1 +/- 5%. This value agrees within the experimental error with the Monte Carlo estimate of 1.115 cGy h-1 U-1 +/- 0.5%. Excellent agreement with previously measured anisotropy functions was observed. Higher anisotropy is observed for the point at 0 degree along the source cable for which no previous data have been reported.

摘要

对于当前一代高剂量率(HDR)铱-192源,可获得的剂量测定数据非常少,而这种源在遥控后装近距离放射治疗中有着广泛应用。我们测量了微型Selectron-HDR源周围的二维剂量率分布,并利用结果验证蒙特卡罗模拟。在固体水模体中使用热释光剂量计(TLD)来测量0.5至10厘米距离范围内的横轴剂量率以及距离源1.5、3和5厘米处的极坐标剂量率分布。在距HDR源2至40毫米的近距离处,我们在水中用硅二极管进行横轴剂量率测量。我们还在相同距离对脉冲剂量率(PDR)源进行二极管测量,以比较不同封装的铱-192源的结果。在测量之前,HDR源和PDR源均已衰变、与电缆分离并进行了校准。将测量的剂量率与蒙特卡罗光子输运计算结果进行比较,蒙特卡罗计算在每个测量点对实验和源几何结构进行了逼真的建模。蒙特卡罗光子输运绝对剂量率计算结果与测量结果之间的一致性平均在5%以内。从横轴实验数据中,我们推导出铱-192 HDR源的剂量率常数λ0的值为1.14 cGy h-1 U-1±5%。该值在实验误差范围内与蒙特卡罗估计值1.115 cGy h-1 U-1±0.5%相符。观察到与先前测量的各向异性函数有极好的一致性。对于沿源电缆0度处的点,观察到更高的各向异性,此前尚无该点的数据报道。

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