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首页> 外文期刊>Medical Physics >On the use of a single-fiber multipoint plastic scintillation detector for 192Ir high-dose-rate brachytherapy
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On the use of a single-fiber multipoint plastic scintillation detector for 192Ir high-dose-rate brachytherapy

机译:关于使用单纤维多点塑料闪烁探测器进行192Ir高剂量率近距离放射治疗

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摘要

Purpose: The goal of this study was to prove the feasibility of using a single-fiber multipoint plastic scintillation detector (mPSD) as an in vivo verification tool during 192Ir high-dose-rate brachytherapy treatments. Methods: A three-point detector was built and inserted inside a catheter-positioning template placed in a water phantom. A hyperspectral approach was implemented to discriminate the different optical signals composing the light output at the exit of the single collection optical fiber. The mPSD was tested with different source-to-detector positions, ranging from 1 to 5 cm radially and over 10.5 cm along the longitudinal axis of the detector, and with various integration times. Several strategies for improving the accuracy of the detector were investigated. The device's accuracy in detecting source position was also tested. Results: Good agreement with the expected doses was obtained for all of the scintillating elements, with average relative differences from the expected values of 3.4 ± 2.1%, 3.0 ± 0.7%, and 4.5 ± 1.0% for scintillating elements from the distal to the proximal. A dose threshold of 3 cGy improved the general accuracy of the detector. An integration time of 3 s offered a good trade-off between precision and temporal resolution. Finally, the mPSD measured the radioactive source positioning uncertainty to be no more than 0.32 ± 0.06 mm. The accuracy and precision of the detector were improved by a dose-weighted function combining the three measurement points and known details about the geometry of the detector construction. Conclusions: The use of a mPSD for high-dose-rate brachytherapy dosimetry is feasible. This detector shows great promise for development of in vivo applications for real-time verification of treatment delivery.
机译:目的:本研究的目的是证明在192Ir大剂量率近距离放射治疗中使用单纤维多点塑料闪烁检测器(mPSD)作为体内验证工具的可行性。方法:建立三点检测器,并将其插入放置在水体模中的导管定位模板内。实现了高光谱方法,以区分组成单收集光纤出口的光输出的不同光信号。使用不同的源到检测器位置对mPSD进行了测试,其径向范围从1到5 cm,沿着检测器的纵轴超过10.5 cm,并且具有各种积分时间。研究了提高探测器精度的几种策略。还测试了该设备检测源位置的准确性。结果:所有闪烁体均与预期剂量良好吻合,从远端到近端与预期值的平均相对差异分别为3.4±2.1%,3.0±0.7%和4.5±1.0% 。 3 cGy的剂量阈值提高了检测器的总体精度。 3 s的积分时间可以在精度和时间分辨率之间取得良好的平衡。最后,mPSD测量的放射源定位不确定度不超过0.32±0.06 mm。通过将三个测量点与有关检测器结构几何形状的已知细节结合在一起的剂量加权函数,可以提高检测器的准确性和精度。结论:将mPSD用于高剂量率近距离放射治疗剂量法是可行的。该检测器显示了开发用于实时验证治疗交付的体内应用的巨大希望。

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