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Dosimetric characterisation of the optically-stimulated luminescence dosimeter in cobalt-60 high dose rate brachytherapy system

机译:钴60高剂量率近距离放射治疗系统中光刺激发光剂量计的剂量学表征

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This study investigates the characteristics and application of the optically-stimulated luminescence dosimeter (OSLD) in cobalt-60 high dose rate (HDR) brachytherapy, and compares the results with the dosage produced by the treatment planning system (TPS). The OSLD characteristics comprised linearity, reproducibility, angular dependence, depth dependence, signal depletion, bleaching rate and cumulative dose measurement. A phantom verification exercise was also conducted using the Farmer ionisation chamber and in vivo diodes. The OSLD signal indicated a supralinear response (R_(2) = 0.9998). It exhibited a depth-independent trend after a steep dose gradient region. The signal depletion per readout was negligible (0.02%), with expected deviation for angular dependence due to off-axis sensitive volume, ranging from 1 to 16%. The residual signal of the OSLDs after 1 day bleached was within 1.5%. The accumulated and bleached OSLD signals had a standard deviation of ± 0.78 and ± 0.18 Gy, respectively. The TPS was found to underestimate the measured doses with deviations of 5% in OSLD, 17% in the Farmer ionisation chamber, and 7 and 8% for bladder and rectal diode probes. Discrepancies can be due to the positional uncertainty in the high-dose gradient. This demonstrates a slight displacement of the organ at risk near the steep dose gradient region will result in a large dose uncertainty. This justifies the importance of in vivo measurements in cobalt-60 HDR brachytherapy.
机译:这项研究调查了光激发发光剂量计(OSLD)在钴60高剂量率(HDR)近距离放射治疗中的特性和应用,并将结果与​​治疗计划系统(TPS)产生的剂量进行了比较。 OSLD的特性包括线性,重现性,角度依赖性,深度依赖性,信号损耗,漂白率和累积剂量测量。还使用农夫电离室和体内二极管进行了幻像验证。 OSLD信号表示超线性响应(R_(2)= 0.9998)。在陡峭的剂量梯度区域后,它表现出与深度无关的趋势。每次读数的信号耗损可忽略不计(0.02%),由于离轴敏感体积,与角度相关的预期偏差为1%至16%。漂白1天后OSLD的残留信号在1.5%以内。累积的和漂白的OSLD信号的标准偏差分别为±0.78和±0.18 Gy。发现TPS会低估测得的剂量,在OSLD中偏差为5%,在Farmer电离室中偏差为17%,对于膀胱和直肠二极管探头的偏差为7%和8%。差异可能归因于高剂量梯度中的位置不确定性。这表明在陡峭的剂量梯度区域附近有风险的器官发生轻微位移将导致较大的剂量不确定性。这证明了在钴60 HDR近距离放射治疗中进行体内测量的重要性。

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