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基于射野大小、深度、射束修正器和射束类型等治疗因素,研究高能医用直线加速器的野内和野外中子污染情况。

Investigating in-field and out-of-field neutron contamination in high-energy medical linear accelerators based on the treatment factors of field size, depth, beam modifiers, and beam type.

作者信息

Biltekin Fatih, Yeginer Mete, Ozyigit Gokhan

机构信息

Department of Radiation Oncology, Faculty of Medicine, Hacettepe University, Sihhiye, Ankara, 06100, Turkey.

Department of Radiation Oncology, Faculty of Medicine, Hacettepe University, Sihhiye, Ankara, 06100, Turkey.

出版信息

Phys Med. 2015 Jul;31(5):517-23. doi: 10.1016/j.ejmp.2015.03.015. Epub 2015 Apr 11.

Abstract

PURPOSE

We analysed the effects of field size, depth, beam modifier and beam type on the amount of in-field and out-of-field neutron contamination for medical linear accelerators (linacs).

METHODS

Measurements were carried out for three high-energy medical linacs of Elekta Synergy Platform, Varian Clinac DHX High Performance and Philips SL25 using bubble detectors. The photo-neutron measurements were taken in the first two linacs with 18 MV nominal energy, whereas the electro-neutrons were measured in the three linacs with 9 MeV, 10 MeV, 15 MeV and 18 MeV.

RESULTS

The central neutron doses increased with larger field sizes as a dramatic drop off was observed in peripheral areas. Comparing with the jaws-shaped open-field of 10 × 10 cm, the motorised and physical wedges contributed to neutron contamination at central axis by 60% and 18%, respectively. The similar dose increment was observed in MLC-shaped fields. The contributions of MLCs were in the range of 55-59% and 19-22% in Elekta and Varian linacs comparing with 10 × 10 and 20 × 20 cm open fields shaped by the jaws, respectively. The neutron doses at shallow depths were found to be higher than the doses found at deeper regions. The electro-neutron dose at the 18 MeV energy was higher than the doses at the electron energies of 15 MeV and 9 MeV by a factor of 3 and 50, respectively.

CONCLUSION

The photo- and electro-neutron dose should be taken into consideration in the radiation treatment with high photon and electron energies.

摘要

目的

我们分析了射野大小、深度、射束修正器和射束类型对医用直线加速器(直线加速器)野内和野外中子污染量的影响。

方法

使用气泡探测器对Elekta Synergy平台、Varian Clinac DHX高性能和飞利浦SL25的三台高能医用直线加速器进行了测量。在前两台标称能量为18 MV的直线加速器中进行了光中子测量,而在三台直线加速器中分别以9 MeV、10 MeV、15 MeV和18 MeV测量了电子中子。

结果

随着射野尺寸增大,中心中子剂量增加,而在外围区域观察到急剧下降。与10×10 cm的钳形开放野相比,电动楔形滤过器和物理楔形滤过器分别使中心轴处的中子污染增加了60%和18%。在多叶准直器(MLC)形成的射野中观察到了类似的剂量增加。与由钳形形成的10×10 cm和20×20 cm开放野相比,Elekta和Varian直线加速器中MLC的贡献分别在55 - 59%和19 - 22%范围内。发现浅深度处的中子剂量高于较深区域的剂量。18 MeV能量下的电子中子剂量分别比15 MeV和9 MeV电子能量下的剂量高3倍和50倍。

结论

在高光子和电子能量的放射治疗中应考虑光中子和电子中子剂量。

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