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医科达电子射野影像装置(EPID)在机架旋转过程中的图像移动:对剂量分布验证的影响。

Image movement of the Elekta EPID during gantry rotation: Effects on the verification of dose distributions.

作者信息

Köhn J, Licher J, Mielke M, Loutfi-Krauss B, Blümer N, Heine B, Rödel C, Scherf C, Ramm U

机构信息

Universitätsklinikum Frankfurt, Klinik für Strahlentherapie und Onkologie, Theodor-Stern-Kai 7, Frankfurt am Main, Germany.

Universitätsklinikum Frankfurt, Klinik für Strahlentherapie und Onkologie, Theodor-Stern-Kai 7, Frankfurt am Main, Germany.

出版信息

Phys Med. 2017 Feb;34:72-79. doi: 10.1016/j.ejmp.2017.01.017. Epub 2017 Feb 4.

Abstract

PURPOSE

The use of Electronic Portal Imaging Devices (EPIDs) to acquire dosimetric information, especially for 3D-back-projection, has been increasingly extended. For a precise back-projection, the accurate knowledge of the movement characteristics of the EPID during gantry rotation is an essential requirement.

METHODS AND MATERIAL

Measurements were conducted with different alignments of steel balls, which were mounted on the treatment table to avoid secondary effects such as the mechanical sag of gantry or jaws. The image movement of the EPID was determined by comparing the predicted projections of the phantoms with the EPID acquired image. Effects on dosimetric verifications were evaluated by γ-evaluation.

RESULTS

The measurement results showed that the shift of the EPID image is larger in Y direction than in X direction. A maximum rotation of 0.3° and nodding of 2.4° of the detector was calculated. Changes in SDD were found up to 10mm. The angles of nodding are overall higher at discrete gantry angles in comparison to images detected for continuous rotation. Using these results we were able to correct the EPID images used for verification measurements. γ-evaluation revealed a significantly improved agreement between planned and measured EPID signal values.

CONCLUSION

The measurement methods and algorithms introduced in this study are simple and comprehensive. Using these methods and algorithms we were able to quantify the major effects on geometrical and dosimetric characteristics. This allows the correction of EPID signal measurements for these effects related to the gantry angle, leading to an improved γ-evaluation for treatment plans.

摘要

目的

电子射野影像装置(EPID)用于获取剂量信息,特别是用于三维反投影的情况日益增多。为了进行精确的反投影,准确了解EPID在机架旋转过程中的运动特性是一项基本要求。

方法与材料

通过安装在治疗床上的钢球的不同对齐方式进行测量,以避免诸如机架或准直器的机械下垂等二次效应。通过将体模的预测投影与EPID采集的图像进行比较来确定EPID的图像移动。通过γ评估来评估对剂量验证的影响。

结果

测量结果表明,EPID图像在Y方向上的偏移比在X方向上更大。计算出探测器的最大旋转角度为0.3°,点头角度为2.4°。发现源皮距(SDD)的变化高达10mm。与连续旋转检测到的图像相比,离散机架角度处的点头角度总体上更高。利用这些结果,我们能够校正用于验证测量的EPID图像。γ评估显示计划和测量的EPID信号值之间的一致性有显著改善。

结论

本研究中引入的测量方法和算法简单且全面。使用这些方法和算法,我们能够量化对几何和剂量特性的主要影响。这允许校正与机架角度相关的这些效应的EPID信号测量,从而改善治疗计划的γ评估。

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