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New water equivalent liquid scintillation solutions for 3D dosimetry.

机译:用于3D剂量测定的新型等效水闪烁液。

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摘要

Despite recent advances in radiochromic film and gel dosimetry techniques, radiation therapy still lacks an efficient, accurate, and convenient dose measurement method capable of measuring the dose simultaneously over a plane or a volume (3D). A possibility for creating such a 3D method based on observing scintillation photons emitted from an irradiated volume was recently reported [A. S. Kirov et al., Med. Phys. 26, 1069 (1999)]. In the present article, we investigate the potential to use a liquid scintillation solution (LS) as a dose sensitive media and, simultaneously, as a water equivalent phantom material which fills the measurement volume. We show that matching water density in addition to energy absorption properties is important for using the LS solution as a phantom. Through a parametric study of the LS attenuation and absorption coefficients as well as Monte Carlo dose calculations and scintillation efficiency measurements we developed novel LS materials. For the new solutions, the calculated dose in LS is within 8% of the dose to water for depths up to 5 cm for photons having energies between 30 keV and 2 MeV. The new LS solutions, which are loaded with a Si containing compound, retain more than 85% of the scintillation efficiency of the unloaded solutions and exhibit high localization of the scintillation process. The new LS solutions are superior with respect to efficiency and water equivalence to plastic scintillator materials used in dosimetry and may be used apart from the mentioned 3D method.
机译:尽管放射致变色膜和凝胶剂量测定技术最近取得了进步,但是放射疗法仍然缺乏能够在平面或体积(3D)上同时测量剂量的有效,准确和方便的剂量测量方法。最近报道了一种基于观察从照射体积发射的闪烁光子来创建这种3D方法的可能性[A. S.Kirov等,医学。物理26,1069(1999)]。在本文中,我们研究了使用液体闪烁溶液(LS)作为剂量敏感介质以及同时用作填充测量体积的水等效体模材料的潜力。我们显示出,除了能量吸收特性外,匹配水密度对于使用LS解决方案作为模型很重要。通过对LS衰减和吸收系数的参数研究,以及蒙特卡洛剂量计算和闪烁效率测量,我们开发了新颖的LS材料。对于新解决方案,对于能量在30 keV和2 MeV之间的光子,深度达5厘米时,LS中的计算剂量在水剂量的8%以内。装有含硅化合物的新型LS溶液保留了未装载溶液的闪烁效率的85%以上,并在闪烁过程中表现出很高的局限性。新的LS解决方案在效率和水当量方面优于剂量法中使用的塑料闪烁体材料,并且可以与上述3D方法分开使用。

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