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使用Mevion S250质子治疗系统对小射野照射中质子剂量计算准确性的实验评估

Experimental Assessment of Proton Dose Calculation Accuracy in Small-Field Delivery Using a Mevion S250 Proton Therapy System.

作者信息

DePew Kyle D, Ahmad Salahuddin, Jin Hosang

机构信息

Department of Radiation Oncology, University of Oklahoma Health Sciences Centre, Oklahoma City, Oklahoma, USA.

出版信息

J Med Phys. 2018 Oct-Dec;43(4):221-229. doi: 10.4103/jmp.JMP_33_18.

Abstract

PURPOSE

Dose calculation accuracy of the Varian Eclipse treatment planning system (TPS) is empirically assessed for small-aperture fields using a Mevion S250 double scattering proton therapy system.

MATERIALS AND METHODS

Five spherical pseudotumors were modeled in a RANDO head phantom. Plans were generated for the targets with apertures of 1, 2, 3, 4, or 5 cm diameter using one, two, and three beams. Depth-dose curves and lateral profiles of the beams were taken with the planned blocks and compared to Eclipse calculations. Dose distributions measured with EBT3 films in the phantom were also compared to Eclipse calculations. Film quenching effect was simulated and considered.

RESULTS

Depth-dose scans in water showed a range pullback (up to 2.0 mm), modulation widening (up to 9.5 mm), and dose escalation in proximal end and sub-peak region (up to 15.5%) when compared to the Eclipse calculations for small fields. Measured full width at half maximum and penumbrae for lateral profiles differed <1.0 mm from calculations for most comparisons. In the phantom study, Eclipse TPS underestimated sub-peak dose. Gamma passing rates improved with each beam added to the plans. Greater range pullback and modulation degradation versus water scans were observed due to film quenching, which became more noticeable as target size increased.

CONCLUSIONS

Eclipse TPS generates acceptable target coverage for small targets with carefully arranged multiple beams despite relatively large dose discrepancy for each beam. Surface doses higher than Eclipse calculations can be mitigated with multiple beams. When using EBT3 film, the quenching effect should be considered.

摘要

目的

使用Mevion S250双散射质子治疗系统,通过实验评估瓦里安Eclipse治疗计划系统(TPS)对小孔径射野的剂量计算准确性。

材料与方法

在RANDO头部体模中模拟了五个球形假肿瘤。使用一、二和三束射束为直径1、2、3、4或5厘米孔径的靶区生成计划。使用计划挡块获取射束的深度剂量曲线和横向轮廓,并与Eclipse计算结果进行比较。还将在体模中用EBT3胶片测量的剂量分布与Eclipse计算结果进行比较。模拟并考虑了胶片猝灭效应。

结果

与Eclipse对小射野的计算结果相比,水中的深度剂量扫描显示射程回拉(高达2.0毫米)、调制展宽(高达9.5毫米)以及近端和亚峰区剂量升高(高达15.5%)。大多数比较中,测量得到的横向轮廓半高宽和半值宽度与计算结果相差<1.0毫米。在体模研究中,Eclipse TPS低估了亚峰剂量。随着计划中增加每一束射束γ通过率提高。由于胶片猝灭,与水扫描相比观察到更大的射程回拉和调制退化,随着靶区尺寸增加这种情况变得更加明显。

结论

尽管每束射束存在相对较大的剂量差异,但通过精心安排多束射束,Eclipse TPS可为小靶区生成可接受的靶区覆盖。多束射束可减轻高于Eclipse计算值的表面剂量。使用EBT3胶片时,应考虑猝灭效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75df/6299753/0c0b93822917/JMP-43-221-g003.jpg

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