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用于评估被动质子治疗辐射场相对生物效应的 SOI 微剂量学和改良的 MKM。

SOI microdosimetry and modified MKM for evaluation of relative biological effectiveness for a passive proton therapy radiation field.

机构信息

Centre for Medical Radiation Physics, University of Wollongong, Wollongong, Australia.

出版信息

Phys Med Biol. 2018 Nov 23;63(23):235007. doi: 10.1088/1361-6560/aaec2f.

Abstract

With more patients receiving external beam radiation therapy with protons, it becomes increasingly important to refine the clinical understanding of the relative biological effectiveness (RBE) for dose delivered during treatment. Treatment planning systems used in clinics typically implement a constant RBE of 1.1 for proton fields irrespective of their highly heterogeneous linear energy transfer (LET). Quality assurance tools that can measure beam characteristics and quantify or be indicative of biological outcomes become necessary in the transition towards more sophisticated RBE weighted treatment planning and for verification of the Monte Carlo and analytical based models they use. In this study the RBE for the CHO-K1 cell line in a passively delivered clinical proton spread out Bragg peak (SOBP) is determined both in vitro and using a silicon-on-insulator (SOI) microdosimetry method paired with the modified microdosimetric kinetic model. The RBE along the central axis of a SOBP with 2 Gy delivered at the middle of the treatment field was found to vary between 1.11-1.98 and the RBE for 10% cell survival between 1.07-1.58 with a 250 kVp x-ray reference radiation and between 1.19-2.34 and 0.95-1.41, respectively, for a Co60 reference. Good agreement was found between RBE values calculated from the SOI-microdosimetry-MKM approach and in vitro. A strong correlation between proton lineal energy and RBE was observed particularly in the distal end and falloff of the SOBP.

摘要

随着越来越多的患者接受质子外照射放射治疗,深入了解治疗过程中所给予剂量的相对生物学效应(RBE)变得愈发重要。临床中使用的治疗计划系统通常针对质子场实施恒定的 RBE 值 1.1,而不论其高度不均匀的线性能量传递(LET)如何。在向更为复杂的 RBE 加权治疗计划过渡以及验证其使用的蒙特卡罗和分析模型时,需要能够测量束流特性并量化或指示生物学结果的质量保证工具。在这项研究中,我们通过被动式传递的临床质子扩展布拉格峰(SOBP)中的 CHO-K1 细胞系在体外和使用硅衬底上绝缘体(SOI)微剂量学方法并结合改良的微剂量动力学模型来确定 RBE。在治疗野中间给予 2 Gy 的 SOBP 中心轴上的 RBE 发现介于 1.11-1.98 之间,而对于 10%细胞存活的 RBE 则介于 1.07-1.58 之间,对应的 250 kVp X 射线参考辐射和 Co60 参考分别为 1.19-2.34 和 0.95-1.41。从 SOI-微剂量学-MKM 方法计算出的 RBE 值与体外值之间具有良好的一致性。在线性能量传递与 RBE 之间观察到很强的相关性,尤其是在 SOBP 的远端和衰减区。

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