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Calibration of a novel four-dimensional diode array.

机译:一种新型的二维二极管阵列的校准。

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摘要

PURPOSE: The aim of this work is to develop effective calibration methods for a novel fourdimensional (4D) diode array for pretreatment verification of intensity-modulated radiation therapy (IMRT) and rotational therapy. METHODS: A novel 4D diode array (ArcCHECK, Sun Nuclear, Melbourne, FL) was developed to meet the needs of appropriate and efficient quality assurance for IMRT and especially rotational radiotherapy. The diode array presents a consistent detector image in beam's eye view at arbitrary gantry angles due to isotropic arrangement of diodes in a three-dimensional (3D) cylindrical phantom. The 50 ms simultaneous update of all diodes on the detector array (fourth dimension) makes it capable of time-resolved beam delivery analysis with any rotational delivery techniques. The calibration procedure consisted of delivering and measuring a series of calibration beams with 5.8 degrees angular spacing surrounding the cylindrical diode array. Correction factors for diode intrinsic sensitivity and directional response dependence were derived from these measurements. A real-time algorithm to derive gantry angles based on the detector signal was developed to interpolate and apply the corresponding angular correction factors. RESULTS: The calibration was validated with ion chamber scanned beam profiles in a 3D water tank. Excellent agreement was observed between diode array measurement and treatment planning system calculation. The accuracy of the gantry angle derivation algorithm was within 1 degree which caused a less than 0.2% dosimetric uncertainty. CONCLUSIONS: With the proposed calibration method and the automatic gantry angle derivation algorithm, the 4D diode array achieved isotropic detector response and is suitable for both IMRT and rotational therapy pretreatment verification.
机译:目的:这项工作的目的是为新型的三维(4D)二极管阵列开发有效的校准方法,以对强度调制放射疗法(IMRT)和旋转疗法进行预处理验证。方法:开发了一种新颖的4D二极管阵列(ArcCHECK,Sun Nuclear,佛罗里达州,佛罗里达州),以满足IMRT尤其是旋转放射治疗的适当和有效质量保证的需求。由于二极管在三维(3D)圆柱体模中的各向同性排列,因此二极管阵列在任意龙门角度的光束眼图中都呈现出一致的检测器图像。 50毫秒同时更新检测器阵列(第四维)上的所有二极管,使其能够使用任何旋转传输技术进行时间分辨的光束传输分析。校准过程包括围绕圆柱形二极管阵列以5.8度角间隔发射和测量一系列校准光束。从这些测量中得出二极管固有灵敏度和方向响应相关性的校正因子。开发了一种基于检测器信号导出龙门角度的实时算法,以内插并应用相应的角度校正因子。结果:校准通过3D水箱中离子室扫描的光束轮廓进行验证。在二极管阵列测量和治疗计划系统计算之间观察到极好的一致性。龙门角度推导算法的精度在1度以内,导致剂量不确定度小于0.2%。结论:利用提出的校准方法和自动龙门架角度推导算法,该4D二极管阵列实现了各向同性的检测器响应,适用于IMRT和旋转疗法预处理验证。

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