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A comprehensive investigation of the accuracy and reproducibility of a multitarget single isocenter VMAT radiosurgery technique

机译:对多目标单等中心VMAT放射外科技术的准确性和可重复性的全面研究

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Purpose: Recent trends in stereotactic radiosurgery use multifocal volumetric modulated arc therapy (VMAT) plans to simultaneously treat several distinct targets. Conventional verification often involves low resolution measurements in a single plane, a cylinder, or intersecting planes of diodes or ion chambers. This work presents an investigation into the consistency and reproducibility of this new treatment technique using a comprehensive commissioned high-resolution 3D dosimetry system (PRESAGE?/ Optical-CT). Methods: A complex VMAT plan consisting of a single isocenter but five separate targets was created in Eclipse for a head phantom containing a cylindrical PRESAGE? dosimetry insert of 11 cm diameter and height. The plan contained five VMAT arcs delivering target doses from 12 to 20 Gy. The treatment was delivered to four dosimeters positioned in the head phantom and repeated four times, yielding four separate 3D dosimetry verifications. Each delivery was completely independent and was given after image guided radiation therapy (IGRT) positioning using Brainlab ExacTrac and cone beam computed tomography. A final delivery was given to a modified insert containing a pin-point ion chamber enabling calibration of PRESAGE ? 3D data to dose. Dosimetric data were read out in an optical-CT scanner. Consistency and reproducibility of the treatment technique (including IGRT setup) was investigated by comparing the dose distributions in the four inserts, and with the predicted treatment planning system distribution. Results: Dose distributions from the four dosimeters were registered and analyzed to determine the mean and standard deviation at all points throughout the dosimeters. A dose standard deviation of 3% was found from dosimeter to dosimeter. Global 3D gamma maps show that the predicted and measured dose matched well 3D gamma passing rate was 98.0% (3%, 2 mm). Conclusions: The deliveries of the irradiation were found to be consistent and matched the treatment plan, demonstrating high accuracy and reproducibility of both the treatment machine and the IGRT procedure. The complexity of the treatment (multiple arcs) and dosimetry (multiple strong gradients) pose a substantial challenge for comprehensive verification. 3D dosimetry can be uniquely effective in this scenario.
机译:目的:立体定向放射外科的最新趋势使用多焦点体积调制电弧治疗(VMAT)计划来同时治疗多个不同的目标。常规验证通常涉及在二极管或离子室的单个平面,圆柱体或相交平面中的低分辨率测量。这项工作使用全面委托的高分辨率3D剂量测定系统(PRESAGE?/ Optical-CT),对这种新治疗技术的一致性和可重复性进行了研究。方法:在Eclipse中为包含圆柱体PRESAGE的头部模型创建了一个复杂的VMAT计划,该计划由一个单一的等角点但五个单独的目标组成。直径和高度为11厘米的剂量测定插件。该计划包含五个VMAT电弧,可提供12至20 Gy的目标剂量。该处理被送至位于头部幻影中的四个剂量计,并重复四次,从而产生四个单独的3D剂量学验证。每次分娩都是完全独立的,并在使用Brainlab ExacTrac和锥束计算机断层扫描进行图像引导放射治疗(IGRT)定位后进行。最后交付给包含针尖离子室的改进型插入件,从而可以校准PRESAGE? 3D数据可计量。剂量数据在光学CT扫描仪中读出。通过比较四个插件中的剂量分布以及预测的治疗计划系统分布,研究了治疗技术(包括IGRT设置)的一致性和可重复性。结果:记录并分析了四个剂量计的剂量分布,以确定整个剂量计中所有点的均值和标准差。剂量计之间的剂量标准偏差小于3%。全局3D伽玛图显示,预测和测量的剂量与3D伽玛射线通过率相当,为98.0%(3%,2 mm)。结论:发现辐照的传递是一致的,并且与治疗计划相符,证明了治疗仪和IGRT程序的准确性和可重复性。处理的复杂性(多弧)和剂量法(多个强梯度)对全面验证提出了重大挑战。在这种情况下,3D剂量测定可能是唯一有效的。

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