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首页> 外文期刊>Medical Physics >Characterization of a fiber-coupled Al2O3:C luminescence dosimetry system for online in vivo dose verification during 192Ir brachytherapy.
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Characterization of a fiber-coupled Al2O3:C luminescence dosimetry system for online in vivo dose verification during 192Ir brachytherapy.

机译:192Ir近距离放射治疗中用于在线体内剂量验证的纤维耦合Al2O3:C发光剂量学系统的表征。

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A prototype of a new dose-verification system has been developed to facilitate prevention and identification of dose delivery errors in remotely afterloaded brachytherapy. The system allows for automatic online in vivo dosimetry directly in the tumor region using small passive detector probes that fit into applicators such as standard needles or catheters. The system measures the absorbed dose rate (0.1 s time resolution) and total absorbed dose on the basis of radioluminescence (RL) and optically stimulated luminescence (OSL) from aluminum oxide crystals attached to optical fiber cables (1 mm outer diameter). The system was tested in the range from 0 to 4 Gy using a solid-water phantom, a Varian GammaMed Plus 192Ir PDR afterloader, and dosimetry probes inserted into stainless-steel brachytherapy needles. The calibrated system was found to be linear in the tested dose range. The reproducibility (one standard deviation) for RL and OSL measurements was 1.3%. The measured depth-dose profiles agreed well with the theoretical expectations computed with the EGSNRC Monte Carlo code, suggesting that the energy dependence for the dosimeter probes (relative to water) is less than 6% for source-to-probe distances in the range of 2-50 mm. Under certain conditions, the RL signal could be greatly disturbed by the so-called stem signal (i.e., unwanted light generated in the fiber cable upon irradiation). The OSL signal is not subject to this source of error. The tested system appears to be adequate for in vivo brachytherapy dosimetry.
机译:已经开发出一种新的剂量验证系统的原型,以促进预防和识别远程后负荷近距离治疗中的剂量输送错误。该系统允许使用小型无源检测器探头直接在肿瘤区域内进行自动在线体内剂量测定,该探头适合于诸如标准针头或导管之类的涂抹器。该系统基于从附着到光纤电缆(外径1毫米)的氧化铝晶体的放射致发光(RL)和光学激发发光(OSL)来测量吸收剂量率(0.1 s时间分辨率)和总吸收剂量。使用固体水体模,Varian GammaMed Plus 192Ir PDR后装填器以及将剂量测定探针插入到不锈钢近距离放射治疗针中,对该系统进行了0至4 Gy范围的测试。发现该校准系统在测试剂量范围内是线性的。 RL和OSL测量的重现性(一个标准偏差)为1.3%。测得的深度剂量分布与通过EGSNRC蒙特卡洛代码计算的理论期望值非常吻合,这表明对于剂量范围探针(相对于水)的能量依赖性小于6%(对于源到探针的距离为)。 2-50毫米。在某些条件下,RL信号可能会受到所谓的茎信号(即,在辐照时在光缆中产生的有害光)的极大干扰。 OSL信号不受此错误源的影响。经测试的系统似乎足以用于体内近距离放射治疗剂量测定。

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