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X射线像素束微辐照系统的蒙特卡罗模拟

Monte carlo simulation of an X-ray pixel beam microirradiation system.

作者信息

Schreiber E C, Chang S X

机构信息

Department of Radiation Oncology, University of North Carolina, Chapel Hill, North Carolina 27599, USA.

出版信息

Radiat Res. 2009 Mar;171(3):332-41. doi: 10.1667/RR1453.1.

Abstract

Monte Carlo simulations are used in the development of a nanotechnology-based multi-pixel beam array small animal microirradiation system. The microirradiation system uses carbon nanotube field emission technology to generate arrays of individually controllable X-ray pixel beams that electronically form irregular irradiation fields having intensity and temporal modulation without any mechanical motion. The microirradiation system, once developed, will be incorporated with the micro-CT system already developed that is based on the same nanotechnology to form an integrated image-guided and intensity-modulated microirradiation system for high-temporal-resolution small animal research. Prospective microirradiation designs were evaluated based on dosimetry calculated using EGSnrc-based Monte Carlo simulations. Design aspects studied included X-ray anode design, collimator design, and dosimetric considerations such as beam energy, dose rate, inhomogeneity correction, and the microirradiation treatment planning strategies. The dosimetric properties of beam energies between 80-400 kVp with varying filtration were studied, producing a pixel beam dose rate per current of 0.35-13 Gy per min per mA at the microirradiation isocenter. Using opposing multi-pixel-beam array pairs reduces the dose inhomogeneity between adjacent pixel beams to negligible levels near the isocenter and 20% near the mouse surface.

摘要

蒙特卡罗模拟被用于基于纳米技术的多像素束阵列小动物微辐照系统的研发。该微辐照系统采用碳纳米管场发射技术来生成可单独控制的X射线像素束阵列,这些像素束以电子方式形成具有强度和时间调制的不规则辐照场,无需任何机械运动。一旦研发成功,该微辐照系统将与已基于相同纳米技术研发的微型CT系统相结合,形成一个用于高时间分辨率小动物研究的集成图像引导和强度调制微辐照系统。基于使用基于EGSnrc的蒙特卡罗模拟计算的剂量学,对预期的微辐照设计进行了评估。研究的设计方面包括X射线阳极设计、准直器设计以及剂量学考虑因素,如束能量、剂量率、不均匀性校正和微辐照治疗计划策略。研究了具有不同过滤的80 - 400 kVp之间束能量的剂量学特性,在微辐照等中心处产生的每个电流的像素束剂量率为每分钟每毫安0.35 - 13 Gy。使用相对的多像素束阵列对可将相邻像素束之间的剂量不均匀性在等中心附近降低到可忽略不计的水平,在小鼠表面附近降低到20%。

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