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配备三级多叶准直器和增强型动态楔形板的双能直线加速器的周边剂量。

Peripheral dose from a dual energy linear accelerator equipped with tertiary multileaf collimators and enhanced dynamic wedge.

作者信息

Varatharaj C, Ravikumar M, Sathiyan S, Supe S S

机构信息

Department of Radiation Physics, Kidwai Memorial Institute of Oncology, Bangalore, India.

出版信息

Gulf J Oncolog. 2011 Jan(9):27-35.

Abstract

Peripheral dose (PD) or the dose outside the geometrical boundaries of the radiation field is of clinical importance when anatomical structures with low dose tolerances might be involved(1). It is the aim of this study is to estimate the PD on linear accelerators on different wedge systems without multileaf collimator (MLC). Measurements were performed on a dual energy linear accelerator equipped with tertiary MLC and enhanced dynamic wedge (EDW). Measurements were made using an ionization chamber embedded in a Radiation Field Analyser (RFA-300) with the secondary collimator and MLC setting of 5x5, 10x10, 15x15, and 20x20 cm2, and with the MLC fully retracted. The effects of SSD on PD were measured at three SSDs of 90, 100, and 110 cm for the irradiation fields of 5x5, 10x10, 15x15, and 20x20 cm2 and the effects of the three different wedges (Upper wedge, Lower Wedge and Enhanced Dynamic Wedge) on PD were measured for 45° wedges with field size of 15x15 cm2. Data were taken from 3 cm to 24 cm away from the field edge. Results show that due to tertiary MLC, PD can be reduced by means of a factor of two to three at certain distance from the edge of the field compared with TG-36 data. In between the wedges, the PD was less for the EDW when compared with the upper and lower physical wedges. We conclude that the reduction in PD is significant in reducing or eliminating the need for external peripheral shielding to reduce the dose on affected critical organs.

摘要

当可能涉及低剂量耐受性的解剖结构时,外周剂量(PD)或辐射野几何边界外的剂量具有临床重要性(1)。本研究的目的是估计在没有多叶准直器(MLC)的不同楔形系统的直线加速器上的外周剂量。在配备三级MLC和增强动态楔形(EDW)的双能直线加速器上进行测量。使用嵌入在辐射场分析仪(RFA - 300)中的电离室进行测量,二级准直器和MLC设置为5×5、10×10、15×15和20×20 cm²,且MLC完全缩回。在90、100和110 cm这三个源皮距(SSD)下,对5×5、10×10、15×15和20×20 cm²的照射野测量SSD对PD的影响;对野大小为15×15 cm²的45°楔形,测量三种不同楔形(上楔形、下楔形和增强动态楔形)对PD的影响。数据采集范围为距野边缘3 cm至24 cm。结果表明,由于三级MLC,与TG - 36数据相比,在距野边缘一定距离处,外周剂量可降低两到三倍。在不同楔形之间,与上、下物理楔形相比,增强动态楔形的外周剂量较小。我们得出结论,外周剂量的降低对于减少或消除外部外周屏蔽以降低受影响关键器官的剂量具有重要意义。

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