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Monte Carlo model of the scanning beam digital x-ray (SBDX) source

机译:扫描束数字X射线(SBDX)源的蒙特卡洛模型

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The scanning-beam digital x-ray (SBDX) system has been developed for fluoroscopic imaging using an inverse x-ray imaging geometry. The SBDX system consists of a large-area x-ray source with a multihole collimator and a small detector. The goal of this study was to build a Monte Carlo (MC) model of the SBDX source as a useful tool for optimization of the SBDX imaging system in terms of its hardware components and imaging parameters. The MC model of the source was built in the EGSnrc/BEAMnrc code and validated using the DOSXYZnrc code and Gafchromic film measurements for 80, 100, and 120kV x-ray source voltages. The MC simulated depth dose curves agreed with measurements to within 5%, and beam profiles at three selected depths generally agreed within 5%. Exposure rates and half-value layers for three voltages were also calculated from the MC simulations. Patient skin-dose per unit detector-dose was quantified as a function of patient size for all three x-ray source voltages. The skin-dose to detector-dose ratio ranged from 5-10 for a 20cm thick patient to 1 × 10 3-1 × 10 5for a 50cm patient for the 120 and 80kV beams, respectively. Simulations of imaging dose for a prostate patient using common imaging parameters revealed that skin-dose per frame was as low as 0.2 mGy.
机译:已经开发出扫描束数字X射线(SBDX)系统,用于使用反X射线成像几何结构的荧光透视成像。 SBDX系统由一个大面积x射线源,一个多孔准直仪和一个小型探测器组成。这项研究的目的是建立一个SBDX源的蒙特卡洛(MC)模型,作为优化SBDX成像系统的硬件组件和成像参数的有用工具。源的MC模型建立在EGSnrc / BEAMnrc代码中,并使用DOSXYZnrc代码和Gafchromic薄膜测量对80、100和120kV X射线源电压进行了验证。 MC模拟的深度剂量曲线与测量值一致在5%以内,三个选定深度的光束轮廓通常在5%以内。还通过MC模拟计算了三个电压的曝光率和半值层。对于所有三个X射线源电压,将患者皮肤剂量/单位检测器剂量定量为患者大小的函数。对于20厘米厚的患者,皮肤剂量与检测器的剂量比范围从120到80kV光束为5-10,而50厘米患者为1×10 3-1×10 5。使用常见的成像参数对前列腺患者的成像剂量进行仿真显示,每帧皮肤剂量低至0.2 mGy。

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