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兆伏级光子束多射野等中心的校准

Alignment of multiradiation isocenters for megavoltage photon beam.

作者信息

Zhang Yin, Ding Kai, Cowan Garth, Tryggestad Erik, Armour Elwood, Wang Ken Kang-Hsin

机构信息

Johns Hopkins University, School of Medicine.

出版信息

J Appl Clin Med Phys. 2015 Nov 8;16(6):314-324. doi: 10.1120/jacmp.v16i6.5733.

Abstract

The accurate measurement of the linear accelerator (linac) radiation isocenter is critical, especially for stereotactic treatment. Traditional quality assurance (QA) procedure focuses on the measurement of single radiation isocenter, usually of 6 megavoltage (MV) photon beams. Single radiation isocenter is also commonly assumed in treatment planning systems (TPS). Due to different flattening filters and bending magnet and steering parameters, the radiation isocenter of one energy mode can deviate from another if no special effort was devoted. We present the first experience of the multiradiation isocenters alignment on an Elekta linac, as well as its corresponding QA procedure and clinical impact. An 8 mm ball-bearing (BB) phantom was placed at the 6 MV radiation isocenter using an Elekta isocenter search algorithm, based on portal images. The 3D radiation isocenter shifts of other photon energy modes relative to the 6 MV were determined. Beam profile scanning for different field sizes was used as an independent method to determine the 2D multiradiation isocenters alignment. To quantify the impact of radiation isocenter offset on targeting accuracy, the 10 MV radiation isocenter was manually offset from that for 6 MV by adjusting the bending magnet current. Because our table isocenter was mechanically aligned to the 6 MV radiation isocenter, the deviation of the table isocentric rotation from the "shifted" 10 MV radiation isocenter after bending magnet adjustment was assessed. Winston-Lutz test was also performed to confirm the overall radiation isocenter positioning accuracy for all photon energies. The portal image method showed the radiation isocenter of the 10 MV flattening filter-free mode deviated from others before beam parameter adjustment. After the adjustment, the deviation was greatly improved from 0.96 to 0.35 mm relative to the 6 MV radiation isocenter. The same finding was confirmed by the profile-scanning method. The maximum deviation of the table isocentric rotation from the 10 MV radiation isocenter was observed to linearly increase with the offset between 6 and 10 MV radiation isocenter; 1 mm radiation isocenter offset can translate to almost 2 mm maximum deviation of the table isocentric rotation from the 10 MV radiation isocenter. The alignment of the multiradiation isocenters is particularly important for high-precision radiotherapy. Our study provides the medical physics community with a quantitative measure of the multiradiation isocenters alignment. A routine QA method should be considered, to examine the radiation isocenters alignment during the linac acceptance.

摘要

直线加速器(linac)辐射等中心的精确测量至关重要,尤其是对于立体定向治疗。传统的质量保证(QA)程序侧重于单个辐射等中心的测量,通常是针对6兆伏(MV)光子束。治疗计划系统(TPS)中也通常假定为单个辐射等中心。由于扁平滤过器、弯曲磁铁和转向参数不同,如果不采取特殊措施,一种能量模式的辐射等中心可能会与另一种能量模式的辐射等中心产生偏差。我们介绍了在医科达直线加速器上进行多辐射等中心对齐的首次经验,以及相应的QA程序和临床影响。使用医科达等中心搜索算法,基于射野图像,将一个8毫米的滚珠轴承(BB)模体放置在6 MV辐射等中心处。确定了其他光子能量模式相对于6 MV的三维辐射等中心偏移。使用不同射野大小的射束轮廓扫描作为确定二维多辐射等中心对齐的独立方法。为了量化辐射等中心偏移对靶向精度的影响,通过调整弯曲磁铁电流,手动将10 MV辐射等中心相对于6 MV的辐射等中心进行偏移。由于我们的治疗床等中心与6 MV辐射等中心进行了机械对齐,因此评估了弯曲磁铁调整后治疗床等中心旋转相对于“偏移”后的10 MV辐射等中心的偏差。还进行了温斯顿 - 卢茨测试,以确认所有光子能量的整体辐射等中心定位精度。射野图像方法显示,在束参数调整前,10 MV无扁平滤过器模式的辐射等中心与其他模式的辐射等中心存在偏差。调整后,相对于6 MV辐射等中心,偏差从0.96毫米大幅改善至0.35毫米。轮廓扫描方法也证实了相同的发现。观察到治疗床等中心旋转相对于10 MV辐射等中心的最大偏差随着6和10 MV辐射等中心之间的偏移呈线性增加;1毫米的辐射等中心偏移可导致治疗床等中心旋转相对于10 MV辐射等中心的最大偏差几乎达到2毫米。多辐射等中心的对齐对于高精度放射治疗尤为重要。我们的研究为医学物理界提供了一种多辐射等中心对齐的定量测量方法。应考虑采用常规QA方法,以在直线加速器验收期间检查辐射等中心的对齐情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83e9/5691033/b80d8b748dea/ACM2-16-314-g001.jpg

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