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Accuracy of Planar Dosimetry for Volumetric Modulated Arc Therapy Quality Assurance.

机译:体积剂量电弧疗法质量保证的平面剂量测定的准确性。

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摘要

With the advent of new, more efficient, rotational therapy techniques such as volumetric modulated arc therapy (VMAT), radiation therapy treatment precision requires evolving quality assurance. Two dimensional (2D) detector arrays have shown angular dependence that must be compensated for by the creation of angular correction factor tables. Currently available correction factor tables have several underlying assumptions that leave room for improvement: first, these correction factors assume that the response of all ion chambers is identical for each angle; second, that the ion chamber array response from gantry angles 0° -- 180° are equivalent to the response from 180° -- 360°; and, third, that the response is independent of the direction of rotation.;Measurements were acquired using a 2D ion chamber array (MatriXX RTM, IBA Dosimetry) for static open fields delivered every 5° around the MatriXX while dose was calculated using Eclipse v8.6 (analytic anisotropic algorithm, Varian Medical Systems). Customized correction factors were created by dividing the calculated dose by the measured dose for each ion chamber. Two measurement positions were used in the creation of the custom correction factors: a coronal position in which the couch was included, and two sagittal orientations in which the couch was not included.;The correction factors were verified using open field arcs and VMAT patient plans, where measured doses were compared to calculated doses using gamma analysis (3%, 3 mm). Narrow fields were also delivered clockwise and counterclockwise in order to investigate the effect of the internal structure of the ion chamber array.;The angular response of the individual ion chambers appears to vary significantly (1 sigma ≤ 4:6%). The response from 0° -- 180° vs 180° -- 360° is significantly different (paired t-test yields p 0:0001). Custom correction factors do enhance the agreement between measured and calculated doses for open field arcs and VMAT patient plans compared to the default correction factors. The direction of rotation appears to affect the dose to the penumbra region of narrow fields, which could affect VMAT patient specific quality assurance.;The custom correction factor tables, using measurements for individual ion chambers over a full 0° -- 360° range, allows for improved accuracy in measurements by the 2D ion chamber array. However, even the corrected measurements still showed discrepancies with the calculated doses for VMAT plans.
机译:随着新的,更有效的旋转疗法技术(例如容积调制电弧疗法(VMAT))的出现,放射疗法的治疗精度需要不断发展的质量保证。二维(2D)检测器阵列已显示出角度依赖性,必须通过创建角度校正因子表来对其进行补偿。当前可用的校正因子表有几个潜在的假设,尚有待改进:首先,这些校正因子假设所有离子室的响应在每个角度均相同。第二,0°-180°机架角度的离子室阵列响应等同于180°-360°来自离子室的响应;第三,响应与旋转方向无关。;使用2D离子室阵列(MatriXX RTM,IBA剂量测定法)对围绕MatriXX每5°传送的静态空旷场进​​行测量,同时使用Eclipse v8计算剂量.6(解析各向异性算法,Varian Medical Systems)。通过将计算的剂量除以每个离子室的测量剂量,可以创建定制的校正因子。在创建自定义校正因子时使用了两个测量位置:一个包括躺椅的冠状位置,一个不包括躺椅的矢状方向;使用开场弧和VMAT患者计划验证了校正因子,其中使用伽玛分析(3%,3 mm)将测量的剂量与计算的剂量进行比较。为了研究离子室阵列的内部结构的影响,还顺时针和逆时针方向传送了窄场。各个离子室的角度响应似乎有很大变化(1 sigma≤4:6%)。 0°-180°与180°-360°的响应差异显着(配对t检验产量p <0:0001)。与默认校正因子相比,自定义校正因子确实增强了实地电弧和VMAT患者计划的测量剂量与计算剂量之间的一致性。旋转方向似乎会影响到狭窄视野半影区的剂量,这可能会影响VMAT患者特定的质量保证;定制校正系数表,使用了整个0°-360°范围内单个离子室的测量值,可以提高2D离子室阵列的测量精度。但是,即使校正后的测量结果仍显示与VMAT计划的计算剂量存在差异。

著录项

  • 作者

    Kishore, Monica.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Health Sciences Radiology.;Biophysics Medical.
  • 学位 M.S.
  • 年度 2011
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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