首页> 外文期刊>Radiation Physics and Chemistry >Characterisation of a MOSFET-based detector for dose measurement under megavoltage electron beam radiotherapy
【24h】

Characterisation of a MOSFET-based detector for dose measurement under megavoltage electron beam radiotherapy

机译:MEGVOLAGE电子束放射疗法下的MOSFET基探测器的表征

获取原文
获取原文并翻译 | 示例
           

摘要

The aim of this study is to investigate the fundamental dosimetric characteristics of the MOSkin detector for megavoltage electron beam dosimetry. The reproducibility, linearity, energy dependence, dose rate dependence, depth dose measurement, output factor measurement, and surface dose measurement under megavoltage electron beam were tested. The MOSkin detector showed excellent reproducibility ( 98%) and linearity (R-2 = 1.00) up to 2000 cGy for 4-20 MeV electron beams. The MOSkin detector also showed minimal dose rate dependence (within +/- 3%) and energy dependence (within 2%) over the clinical range of electron beams, except for an energy dependence at 4 MeV electron beam. An energy dependence correction factor of 1.075 is needed when the MOSkin detector is used for 4 MeV electron beam. The output factors measured by the MOSkin detector were within 2% compared to those measured with the EBT3 film and CC13 chamber. The measured depth doses using the MOSkin detector agreed with those measured using the CC13 chamber, except at the buildup region due to the dose volume averaging effect of the CC13 chamber. For surface dose measurements, MOSkin measurements were in agreement within +/- 3% to those measured using EBT3 film. Measurements using the MOSkin detector were also compared to electron dose calculation algorithms namely the GGPB and eMC algorithms. Both algorithms were in agreement with measurements to within +/- 2% and +/- 4% for output factor (except for the 4 x 4 cm(2) field size) and surface dose, respectively. With the uncertainties taken into account, the MOSkin detector was found to be a suitable detector for dose measurement under megavoltage electron beam. This has been demonstrated in the in vivo skin dose measurement on patients during electron boost to the breast tumour bed.
机译:本研究的目的是研究MUSKIN探测器的基本剂量特性,用于MEGVOLAGE电子束剂量测定法。测试了巨大电压电子束下的再现性,线性,能量依赖性,剂量率依赖性,深度剂量测量,输出因子测量和表面剂量测量。 MOSkin检测器显示出优异的再现性(& 98%)和线性度(R-2 = 1.00),最高可达4-20 MeV电子束的2000 CGY。除了在4MeV电子束的能量依赖性之外,MOSkin检测器还显示出最小剂量率依赖性(在+/- 3%)和能量依赖(在+/- 3%)和能量依赖(在2%内),除了4mev电子束的能量依赖性。当MOSKin检测器用于4MEV电子束时,需要1.075的能量依赖性校正因子。与用EBT3膜和CC13室测量的那些相比,由MOSkin检测器测量的输出因子在2%以内。除了CC13室的剂量平均效应,除了使用CC13室的使用CC13室测量的那些,可以使用MOSkin检测器的测量深度剂量。对于表面剂量测量,MOSkin测量在+/- 3%内与使用EBT3薄膜测量的那些相一致。也将使用MOSkin检测器的测量与电子剂量计算算法进行比较,即GGPB和EMC算法。两种算法都与输出系数的+/- 2%和+/- 4%的测量值一致(除了4×4cm(2)场大小)和表面剂量外。通过考虑的不确定性,发现MOSKin检测器是巨大电压电子束下剂量测量的合适探测器。在电子升压到乳腺肿瘤床上的患者中,这已经证明了该患者的体内皮肤剂量测量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号