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Dosimetry of cone-defined stereotactic radiosurgery fields with a commercial synthetic diamond detector

机译:商用合成金刚石探测器对锥形立体定向放射外科领域进行剂量测定

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摘要

PurposeududSmall field x-ray beam dosimetry is difficult due to a lack of lateral electronic equilibrium, source occlusion, high dose gradients and detector volume averaging. Currently there is no single definitive detector recommended for small field dosimetry. The objective of this work was to evaluate the performance of a new commercial synthetic diamond detector, namely the PTW 60019 microDiamond, for the dosimetry of small x-ray fields as used in stereotactic radiosurgery (SRS).ududMethodsududSmall field sizes were defined by BrainLAB circular cones (4 – 30 mm diameter) on a Novalis Trilogy linear accelerator and using the 6 MV SRS x-ray beam mode for all measurements. Percentage depth doses were measured and compared to an IBA SFD and a PTW 60012 E diode. Cross profiles were measured and compared to an IBA SFD diode. Field factors, Ω_(Q_clin,Q_msr)^(f_clin,f_msr ), were calculated by Monte Carlo methods using BEAMnrc and correction factors, k_(Q_clin,Q_msr)^(f_clin,f_msr ), were derived for the PTW 60019 microDiamond detector. ududResultsududFor the small fields of 4 to 30 mm diameter, there were dose differences in the PDDs of up to 1.5% when compared to an IBA SFD and PTW 60012 E diode detector. For the cross profile measurements the penumbra values varied, depending upon the orientation of the detector. The field factors, Ω_(Q_clin,Q_msr)^(f_clin,f_msr ), were calculated for these field diameters at a depth of 1.4 cm in water and they were within 2.7% of published values for a similar linear accelerator. The corrections factors, k_(Q_clin,Q_msr)^(f_clin,f_msr ), were derived for the PTW 60019 microDiamond detector.ududConclusionsududWe conclude that the new PTW 60019 microDiamond detector is generally suitable for relative dosimetry in small 6 MV SRS beams for a Novalis Trilogy linear equipped with circular cones.
机译:目的 ud ud由于缺乏横向电子平衡,源遮挡,高剂量梯度和检测器体积平均,因此难以实现小视场X射线束剂量测定。当前,没有针对小场剂量法推荐使用的单个确定性检测器。这项工作的目的是评估用于立体定向放射外科(SRS)的小型X射线场剂量测定的新型商用合成金刚石检测器PTW 60019 microDiamond的性能。 ud udMethods ud udSmall场大小由Novalis Trilogy线性加速器上的BrainLAB圆锥体(直径4 – 30 mm)定义,并使用6 MV SRS X射线束模式进行所有测量。测量深度百分比剂量,并将其与IBA SFD和PTW 60012 E二极管进行比较。测量交叉轮廓并将其与IBA SFD二极管进行比较。使用BEAMnrc通过Monte Carlo方法计算了场因子Ω_(Q_clin,Q_msr)^(f_clin,f_msr),并为PTW 60019微型金刚石检测器得出了校正因子k_(Q_clin,Q_msr)^(f_clin,f_msr)。 ud ud结果 ud ud对于4至30 mm直径的小视场,与IBA SFD和PTW 60012 E二极管检测器相比,PDD的剂量差异高达1.5%。对于交叉轮廓测量,半影值根据检测器的方向而变化。对于在水中1.4厘米深度处的这些场直径,计算了场因子Ω_(Q_clin,Q_msr)^(f_clin,f_msr),它们在类似线性加速器的公开值的2.7%范围内。我们得出了PTW 60019微型金刚石检测器的校正因子k_(Q_clin,Q_msr)^(f_clin,f_msr)。 ud ud结论 ud ud我们得出结论,新的PTW 60019微型金刚石检测器通常适用于小剂量的相对剂量测定适用于配有圆锥的Novalis Trilogy linear的6 MV SRS光束。

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