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A measurement-based generalized source model for Monte Carlo dose simulations of CT scans

机译:CT扫描蒙特卡罗剂量模拟的基于测量的广义源模型

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The goal of this study is to develop a generalized source model for accurate Monte Carlo dose simulations of CT scans based solely on the measurement data without a priori knowledge of scanner specifications. The proposed generalized source model consists of an extended circular source located at x-ray target level with its energy spectrum, source distribution and fluence distribution derived from a set of measurement data conveniently available in the clinic. Specifically, the central axis percent depth dose (PDD) curves measured in water and the cone output factors measured in air were used to derive the energy spectrum and the source distribution respectively with a Levenberg-Marquardt algorithm. The in-air film measurement of fan-beam dose profiles at fixed gantry was back-projected to generate the fluence distribution of the source model. A benchmarked Monte Carlo user code was used to simulate the dose distributions in water with the developed source model as beam input. The feasibility and accuracy of the proposed source model was tested on a GE LightSpeed and a Philips Brilliance Big Bore multi-detector CT (MDCT) scanners available in our clinic. In general, the Monte Carlo simulations of the PDDs in water and dose profiles along lateral and longitudinal directions agreed with the measurements within 4%/l mm for both CT scanners. The absolute dose comparison using two CTDI phantoms (16 cm and 32 cm in diameters), indicated a better than 5% agreement between the Monte Carlo-simulated and the ion chamber-measured doses at a variety of locations for the two scanners. Overall, this study demonstrated that a generalized source model can be constructed based only on a set of measurement data and used for accurate Monte Carlo dose simulations of patients' CT scans, which would facilitate patient-specific CT organ dose estimation and cancer risk management in the diagnostic and therapeutic radiology.
机译:本研究的目标是为CT扫描的精确蒙特卡罗剂量模拟,仅基于测量数据开发一般性的源模型,而无需先验的扫描仪规格。所提出的广义源模型包括位于X射线目标水平的扩展圆形源,其能谱,源分布和来自诊所中方便的一组测量数据的流量分布。具体地,在水中测量的中央轴百分比深度剂量(PDD)曲线和在空气中测量的锥形输出因子分别通过Levenberg-Marquardt算法导出能谱和源分布。将固定龙门架的风扇束剂量剖面的空中薄膜测量重新投影,以产生源模型的流量分布。基准Monte Carlo用户代码用于模拟水中的剂量分布与开发的源模型作为光束输入。在GE ElctRespeed和飞利浦在我们的诊所提供的飞行员和飞利浦的飞利浦亮度多探测器CT(MDCT)扫描仪中测试了所提出的源模型的可行性和准确性。通常,沿着横向和纵向的水和剂量曲线中PDD的蒙特卡罗模拟与CT扫描仪的4%/ L mm内的测量值相同。使用两个CTDI幻影(16cm和32cm的直径)的绝对剂量比较,表示在两个扫描仪各种位置处的蒙特卡罗模拟和离子室测量剂量之间的达成优于5%。总体而言,本研究证明,只能基于一组测量数据构建广义源模型,并用于患者CT扫描的准确蒙特卡罗剂量模拟,这将促进患者特异性CT器官剂量估算和癌症风险管理诊断和治疗放射学。

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