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Acceptance testing and quality assurance of Simulix Evolution radiotherapy simulator

机译:Simulix Evolution放射治疗模拟器的验收测试和质量保证

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摘要

The success of radiotherapy depends on precise treatment simulation and proper patient positioning. The simulator is a conventional radiographic and fluoroscopic system which emulates the geometrical positions of radiotherapy treatment unit. Hence, the acceptance tests and quality assurance (QA) of the simulator are important prior to its commissioning for the safe and precise clinical use. The verification of mechanical and optical readouts, field size, isocenter, optical and radiation field congruence were performed. The X-ray beam parameters were tested for kVp mAs and consistency of radiation output. The flat panel detector performance was checked with respect to resolution, low contrast sensitivity (LCS), automatic dose rate control (ADRC), and gray image resolution (GIR). Gantry, table, and imaging system collision possibility was checked. Radiation survey around the room was also performed. The field size test for digital readout and on graph paper, the results of isocenter checkup for rotation of gantry, collimator, and couch, and the deviations observed in auto stop for various movements were found within the tolerance limits. Optical field and radiation field was found congruent. All the lasers were found aligned with the established isocenter. Maximum deviation for set and measured kV was found to be 3% in fluoro mode. The maximum deviation observed in mAs was 1.5% in 3-point as well as in 2-point film exposed mode. The X-ray output was found consistent. The results of tests for resolution, LCS, ADRC, and GIR of the flat panel detector were within tolerance limits. All the six safety interlocks were found working. Radiation level around the room was found within the acceptable limits. All the tests carried out were found within the tolerance limits. The data which has been taken in this study will provide basic support to the routine QA of the simulator.
机译:放射治疗的成功取决于精确的治疗模拟和正确的患者定位。该模拟器是传统的射线照相和荧光检查系统,其模拟放射治疗单元的几何位置。因此,在安全调试之前,模拟器的验收测试和质量保证(QA)对于临床使用非常重要。进行了机械和光学读数,场大小,等中心点,光学和辐射场一致性的验证。测试了X射线束参数的kVp mAs和辐射输出的一致性。在分辨率,低对比度灵敏度(LCS),自动剂量率控制(ADRC)和灰度图像分辨率(GIR)方面检查了平板探测器的性能。检查了龙门架,工作台和成像系统的碰撞可能性。还进行了房间周围的辐射调查。在公差范围内,发现了数字读数和方格纸上的区域尺寸测试,龙门架,准直仪和床架旋转等角点检查的结果以及各种运动在自动停止中观察到的偏差。发现光场和辐射场是一致的。发现所有激光都与已建立的等角点对齐。在氟模式下,设定和测量kV的最大偏差为3%。在3点以及2点胶卷曝光模式下,以mAs表示的最大偏差为1.5%。发现X射线输出一致。平板探测器的分辨率,LCS,ADRC和GIR的测试结果均在公差范围内。发现六个安全联锁全部正常工作。发现房间周围的辐射水平在可接受的范围内。所有进行的测试均在公差范围内。这项研究中获得的数据将为模拟器的常规QA提供基本支持。

著录项

  • 来源
    《Radiation Protection and Environment》 |2015年第3期|102-108|共7页
  • 作者单位

    Department of Radiotherapy, Uttar Pradesh Rural Institute of Medical Sciences and Research, Saifai;

    Department of Radiotherapy, King George Medical University, Lucknow, Uttar Pradesh;

    Department of Radiotherapy, King George Medical University, Lucknow, Uttar Pradesh,Roentgen-SAIMS Radiation Oncology Centre, Sri Aurobirtdo Institute of Medical Sciences, Indore, Madhya Pradesh - 453 111, India;

    Roentgen-SAIMS Radiation Oncology Centre, Sri Aurobindo Institute of Medical Sciences, Indore, Madhya Pradesh, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acceptance test; flat panel detector; quality assurance; Simulix Evolution simulator;

    机译:验收测试;平板探测器质量保证;Simulix Evolution模拟器;

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