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Monte Carlo investigations of radiotherapy beams : studies of conventional, stereotactic and unflattened beams

机译:蒙特卡罗对放射治疗射束的研究:常规,立体定向和非平坦射束的研究

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摘要

Monte Carlo modelling is a useful method of investigating the electron and photon transport in radiotherapy linear accelerators. The probability of interactions of the materials stored in the cross-section library is considered to be theoretically accurate. Calculations made by Monte Carlo techniques have many roles including investigation of unusual situations where measurements are difficult and as a problem solver. The predictions made by a validated model can be used to confirm an assumption or prove a hypothesis. This study is aimed to investigate the performance of the DOSI detector, a prototype detector which is position sensitive with submillimeter resolution. This solid-state detector is made of p-type diode has silicon material as its volume element. Work from other authors has shown that other silicon detectors overestimate the dose as field size and depth increase. To overcome this, a mechanism for correction has to be determined. For this reason, this investigation compares experimental data and calculated results using Monte Carlo method at 6 MV photon energy from a Varian linear accelerator. A small degree of perturbation has been found from this study, and work on improvement of the dose measurements has been carried out. Results have been presented and suggestion for a better dose meter is discussed.
机译:蒙特卡洛建模是研究放射疗法线性加速器中电子和光子传输的有用方法。从理论上讲,存储在横截面库中的材料发生相互作用的可能性被认为是准确的。蒙特卡洛技术进行的计算具有许多作用,包括调查测量困难的异常情况并作为问题解决者。经过验证的模型所做的预测可用于确认假设或证明假设。这项研究旨在调查DOSI检测器的性能,该检测器是对亚毫米分辨率的位置敏感的原型检测器。该固态检测器由以硅材料为体积元素的p型二极管制成。其他作者的工作表明,随着场大小和深度的增加,其他硅探测器会高估剂量。为了克服这个问题,必须确定一种校正机制。因此,本研究使用蒙特卡罗方法在来自瓦里安线性加速器的6 MV光子能量下比较了实验数据和计算结果。从这项研究中发现了很小程度的扰动,并且已经进行了改善剂量测量的工作。已经提出了结果,并讨论了更好的剂量计的建议。

著录项

  • 作者

    Jaafar Sidek Mohamed Ariff;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 English
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