首页> 外文期刊>Australasian physical & engineering sciences in medicine >Patient‑specific quality assurance on a Varian Halcyon linear accelerator using a PTW Octavius 4D device
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Patient‑specific quality assurance on a Varian Halcyon linear accelerator using a PTW Octavius 4D device

机译:使用PTW Octavius 4D装置对Varian Halcyon线性加速器的患者特定质量保证

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摘要

This study investigates and validates the use of the Octavius 4D system for patient specific quality assurance on Halcyon, which is capable of rotating at 4 revolutions per minute (RPM). A commercially available PTW Octavius 4D system was used for this study which had a maximum rotation speed of 3 RPM. Initial validation included testing the accuracy of the inclinometer, percent depth doses (PDD), output factors, and dose profiles for selected static square fields. The same static fields were also subject to a gamma comparison with the TPS. This was followed by an evaluation of twelve clinical treatment plans and seven non-clinical plans with varying gantry rotation speeds. All testing was completed using detector array measurement times of 200 ms and 100 ms. Inclinometer accuracy was within 0.3 degrees of actual gantry angle. Output factors varied less than 0.6%, PDD differences were no greater than 1.4%, and dose profile differences were less than 2.2%. Gamma pass rates for the static fields were 96.7% (2%/2mm) and 99.7% (3%/3mm). A prototype control unit, which had a maximum rotation speed of 4 RPM was also used to test the clinical and non-clinical plans. For the clinical plans, the mean gamma pass rates (2%/2mm) were 86.1% and 88.1% for the commercial unit and prototype unit respectively. Results using a measurement time of 200 ms were superior to those using 100 ms. For Halcyon deliveries greater than 3 RPM, worst case gamma results for the commercial unit were 28.6% compared to 98.5% using the prototype unit. Accurate patient specific quality assurance results can be obtained using the Octavius 4D system with a Halcyon linac, provided that the system measurement time is kept at 200 ms and the rotation speed of Halycon does not exceed 3 RPM. For higher RPM deliveries, an Octavius 4D unit with 4 RPM rotation capability is recommended.
机译:本研究探讨和验证使用屋大维4D系统用于在太平患者特定的质量保证,其能够在每分钟(RPM)4转旋转的。市售的PTW屋大维4D体系用于该研究其具有3 RPM的最大旋转速度。初始验证包括测试所述测斜仪,百分深度剂量(PDD),输出的因素,和剂量分布的精确度对选定的静态方字段。同样的静态字段也受到与TPS伽玛比较。其次十二临床治疗方案,并与不同的机架旋转速度七个非临床计划的评估。所有测试均使用200毫秒和100毫秒的检测器阵列的测量时间完成。测斜仪的精度内是0.3度实际台架角度的。输出因素变化小于0.6%,PDD差异不大于1.4%,和剂量分布差异小于2.2%。用于静态字段伽马通率分别为96.7%(2%/ 2毫米)和99.7%(3%/毫米)。原型控制单元,其具有4 RPM的最大旋转速度也被用于测试临床和非临床计划。对于临床计划,平均伽马合格率(2%/ 2毫米)分别为86.1%,分别为商业单位和原型机88.1%。结果使用200ms的测量时间明显优于使用100毫秒的那些。对于太平交付大于3 RPM,对于商业单元最坏的情况下伽玛结果与使用原型单元98.5%为28.6%。准确的患者特定的质量保证的结果可以使用屋大维4D系统与太平线性加速器来获得,条件是该系统的测量时间保持在200毫秒和Halycon的旋转速度不超过3 RPM。对于更高的RPM交付,建议使用屋大维4D单元4 RPM旋转能力。

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    Icon Grp 22 Cordelia St South Brisbane Qld 4101 Australia|Queensland Univ Technol Sch Chem Phys & Mech Engn GPO Box 2434 Brisbane Qld 4000 Australia;

    Icon Grp 22 Cordelia St South Brisbane Qld 4101 Australia;

    Queensland Univ Technol Sch Chem Phys & Mech Engn GPO Box 2434 Brisbane Qld 4000 Australia;

    Queensland Univ Technol Sch Chem Phys & Mech Engn GPO Box 2434 Brisbane Qld 4000 Australia|Royal Brisbane & Womens Hosp Canc Care Serv Herston Qld Australia|Univ Queensland Sch Informat Technol & Elect Engn St Lucia Qld 4072 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Radiation therapy; Quality control; Array dosimetry;

    机译:放射疗法;质量控制;阵列剂量测定;

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