分析了低监控单元设置下6 MV光子束的特性

L. Nithya, N. Raj, S. Rathinamuthu
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引用次数: 0

摘要

分析低监控单元(MU)设置的特性是必要的,特别是对于强度调制技术。强度调制可以通过调强放疗(IMRT)或体积调制电弧治疗(VMAT)来实现。在IMRT和VMAT计划中存在低MUs的可能性。最小MU/段必须在调试时由物理学家在处理计划系统中设置。在本研究中,研究了协同线性加速器在低毫微米设置下6 MV光子束的剂量线性、稳定性、平整度和对称性等特性。测量是在Synergy直线加速器上进行的,使用的是带有FC65-G腔室和Profiler 2的板模体。在10 cm ×10 cm的范围内,研究了1 ~ 100 MU的线性关系。1 μ的线性误差为4.2%。在1mu条件下,梁的平整度下降。梁的稳定性和对称性都在规定范围内。通过这项研究,我们得出结论,< 3mu的治疗可能会导致剂量传递的不确定性。为了确保正确的剂量传递和更小的不确定性,建议在IMRT和VMAT计划中使用≥3mu作为每节段的最小MU。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analyzing the characteristics of 6 MV photon beam at low monitor unit settings
Analyzing the characteristics of a low monitor unit (MU) setting is essential, particularly for intensity-modulated techniques. Intensity modulation can be achieved through intensity-modulated radiotherapy (IMRT) or volumetric-modulated arc therapy (VMAT). There is possibility for low MUs in the segments of IMRT and VMAT plans. The minimum MU/segment must be set by the physicist in the treatment planning system at the time of commissioning. In this study, the characteristics such as dose linearity, stability, flatness, and symmetry of 6 MV photon beam of a Synergy linear accelerator at low MU settings were investigated for different dose rates. The measurements were performed for Synergy linear accelerator using a slab phantom with a FC65-G chamber and Profiler 2. The MU linearity was studied for 1–100 MU using a field size of 10 cm ×10 cm. The linearity error for 1 MU was 4.2%. Flatness of the beam was deteriorated in 1 MU condition. The beam stability and symmetry was well within the specification. Using this study, we conclude that the treatment delivered with <3 MU may result in uncertainty in dose delivery. To ensure the correct dose delivery with less uncertainty, it is recommended to use ≥3 MU as the minimum MU per segment in IMRT and VMAT plans.
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