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Range degradation and distal edge behavior of proton radiotherapy beams using 11C activation and Monte Carlo simulation.

机译:使用11C激活和蒙特卡洛模拟的质子放疗束的射程下降和远端边缘行为。

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摘要

The distal edge of therapeutic proton radiation beams was investigated by different methods. Proton beams produced at the Hampton University Proton Therapy Institute (HUPTI) were used to irradiate a Polymethylmethacrylate (PMMA) phantom for three different ranges (13.5, 17.0 and 21.0 cm) to investigate the distal slope dependence of the Bragg peak. The activation of 11 C was studied by scanning the phantom less than 10 minutes post-irradiation with a Philips Big Bore Gemini(c) PET/CT. The DICOM images were imported into the Varian Eclipse(c) Treatment Planning System (TPS) for analysis and then analyzed by ImageJ(c) . The distal slope ranged from ?0.1671 +/- 0.0036 to -0.1986 +/- 0.0052 (pixel intensity/slice number) for ranges 13.5 to 21.0 cm respectively. A realistic description of the setup was modeled using the GATE 7.0 Monte Carlo simulation tool and compared to the experiment data. The results show the distal slope ranged from -0.1158+/-0.0133 to -0.0787+/-0.002 (Gy/mm). Additionally, low activity, 11C were simulated to study the 11C reconstructed half-life dependence versus the initial activity for six ranges chosen around the previous activation study. The results of the expected/nominal half-life vs. activity ranged from -5 x 10-4 +/- 2.8104 x 10-4 to 1.6 x 10-3 +/- 9.44 x 10-4 (%diff./Bq). The comparison between two experiments with proton beams on a PMMA phantom and multi-layer ion chamber, and two GATE simulations of a proton beam incident on a water phantom and 11C PET study show that: (i) the distal fall-off variation of the steepness of the slopes are found to be similar thus validating the sensitivity of the PET technique to the range degradation and (ii) the average of the super-ratios difference between all studies observed is primarily due to the difference in the dose deposited in the media.
机译:治疗性质子辐射束的远端边缘已通过不同方法进行了研究。汉普顿大学质子治疗研究所(HUPTI)产生的质子束用于照射三个不同范围(13.5、17.0和21.0 cm)的聚甲基丙烯酸甲酯(PMMA)体模,以研究布拉格峰对远端斜率的依赖性。通过用Philips Big Bore Gemini(c)PET / CT照射后不到10分钟的扫描体模来研究11 C的活化。将DICOM图像导入到Varian Eclipse(c)处理计划系统(TPS)中进行分析,然后通过ImageJ(c)进行分析。对于13.5至21.0cm的范围,远侧斜率的范围分别从α0.1671+/- 0.0036至-0.1986 +/- 0.0052(像素强度/切片数)。使用GATE 7.0蒙特卡洛模拟工具对设置进行了逼真的描述,并与实验数据进行了比较。结果显示远端斜率在-0.1158 +/- 0.0133到-0.0787 +/- 0.002(Gy / mm)的范围内。此外,对低活性的11C进行了模拟,以研究11C重建的半衰期依赖性与在先前激活研究前后选择的六个范围的初始活性之间的关系。预期/标称半衰期与活性的关系结果为-5 x 10-4 +/- 2.8104 x 10-4至1.6 x 10-3 +/- 9.44 x 10-4(%diff。/ Bq) 。两次在PMMA幻影和多层离子室上进行质子束实验的比较,以及两次入射在水幻影上的质子束的GATE模拟和11C PET研究表明:(i)发现坡度的陡度相似,从而验证了PET技术对范围退化的敏感性,并且(ii)所有观察到的研究之间的超比例差异的平均值主要是由于沉积在介质中的剂量差异造成的。

著录项

  • 作者

    Elmekawy, Ahmed Farouk.;

  • 作者单位

    Hampton University.;

  • 授予单位 Hampton University.;
  • 学科 Medical imaging.;Theoretical physics.;Nuclear physics and radiation.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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