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首页> 外文期刊>Medical Physics >Novel dosimetric phantom for quality assurance of volumetric modulated arc therapy.
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Novel dosimetric phantom for quality assurance of volumetric modulated arc therapy.

机译:新型剂量学体模,用于质量保证的电弧调制治疗。

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摘要

The objective of this work is to assess the suitability and performance of a new dosimeter system with a novel geometry for the quality assurance (QA) of volumetric modulated arc therapy (VMAT). The new dosimeter system consists of a hollow cylinder (15 and 25 cm inner and outer diameters) with 124 diodes embedded in the phantom's cylindrical wall forming four rings of detectors. For coplanar beams, the cylindrical geometry and the ring diode pattern offer the advantage of invariant perpendicular incidence on the beam central axis for any gantry angle and also have the benefit of increasing the detector density as both walls of the cylinder sample the beam. Other advantages include real-time readout and reduced weight with the hollow phantom shape. A calibration method taking into account the variation in radiation sensitivity of the diodes as a function of gantry angle was developed and implemented. In this work, the new dosimeter system was used in integrating mode to perform composite dose measurements along the cylindrical surface supporting the diodes. The reproducibility of the dosimeter response and the angular dependence of the diodes were assessed using simple 6 MV photon static beams. The performance of the new dosimeter system for VMAT QA was then evaluated using VMAT plans designed for a head and neck, an abdominal sarcoma, and a prostate patient. These plans were optimized with 90 control points (CPs) and additional versions of each plan were generated by increasing the number of CPs to 180 and 360 using linear interpolation. The relative dose measured with the dosimeter system for the VMAT plans was compared to the corresponding TPS dose map in terms of relative dose difference (% deltaD) and distance to agreement (DTA). The dosimeter system's sensitivity to gantry rotation offset and scaling errors as well as setup errors was also evaluated. For static beams, the dosimeter system offered good reproducibility and demonstrated small residual diode angular dependence after calibration. For VMAT deliveries, the agreement between measured and calculated doses was good with > or = 86.4% of the diodes satisfying 3% of % deltaD or 2 mm DTA for the 180 CP plans. The phantom offered sufficient sensitivity for the detection of small gantry rotation offset (3 degrees) and scaling errors (1 degree) as well as phantom setup errors of 1 mm, although the results were plan dependent. With its novel geometry, the dosimeter system was also able to experimentally demonstrate the discretization effect of the number of CPs used in the TPS to simulate a continuous arc. These results demonstrate the suitability of the new dosimeter system for the patient-specific QA of VMAT plans and suggest that the dosimeter system can be an effective tool in the routine QA and commissioning of treatment machines capable of VMAT delivery and cone-beam CT image guidance.
机译:这项工作的目的是评估具有新颖几何形状的新型剂量计系统的适用性和性能,以实现容积调制电弧疗法(VMAT)的质量保证(QA)。新的剂量计系统由一个空心圆柱体(内径和外径分别为15和25 cm)以及在幻影圆柱壁中嵌入的124个二极管组成,形成四个探测器环。对于共面光束,圆柱几何形状和环形二极管图案的优点是,对于任何龙门角度,光束中心轴上的垂直入射都是不变的,并且还具有在圆柱体的两个壁对光束进行采样时提高检测器密度的优点。其他优点包括实时读数和空心幻影形状减轻的重量。制定并实施了一种校准方法,该方法考虑了二极管辐射灵敏度随机架角度的变化。在这项工作中,新的剂量计系统以积分模式使用,沿着支撑二极管的圆柱表面执行复合剂量测量。使用简单的6 MV光子静态光束评估剂量计响应的可重复性和二极管的角度依赖性。然后,使用针对头颈部,腹部肉瘤和前列腺患者设计的VMAT计划评估了用于VMAT QA的新剂量计系统的性能。这些计划通过90个控制点(CP)进行了优化,并且通过使用线性插值将CP的数量增加到180和360生成了每个计划的附加版本。就相对剂量差(%delDD)和一致距离(DTA)而言,将针对VMAT计划使用剂量计系统测量的相对剂量与相应的TPS剂量图进行了比较。还评估了剂量计系统对机架旋转偏移和缩放误差以及设置误差的敏感性。对于静态光束,剂量计系统可提供良好的重现性,并在校准后显示出较小的残留二极管角度依赖性。对于VMAT交付,对于180 CP计划,>或= 86.4%的二极管满足deltaD%的3%或2 mm DTA的3%时,测量和计算的剂量之间的一致性良好。体模为检测小机架旋转偏移量(3度)和缩放比例误差(1度)以及1毫米的体模设置误差提供了足够的灵敏度,尽管结果取决于计划。凭借其新颖的几何形状,剂量计系统还能够通过实验证明TPS中用于模拟连续电弧的CP数量的离散化效果。这些结果证明了新的剂量计系统适用于VMAT计划针对患者的特定质量保证,并表明该剂量计系统可以成为常规的质量保证和调试能够进行VMAT输送和锥束CT图像引导的治疗仪的有效工具。

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