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CT扫描仪X射线光谱的测定与验证。

Determination and verification of the x-ray spectrum of a CT scanner.

作者信息

Hassan Ahmad Ibrahim, Skalej Martin, Schlattl Helmut, Hoeschen Christoph

机构信息

Otto von Guericke Universität Magdeburg, Universitätsklinikum Magdeburg A.ö.R., Institut für Neuroradiologie, Magdeburg, Deutschland, Germany.

Otto von Guericke Universität, Institut für Medizintechnik, Fakultät für Elektrotechnik und Informationstechnik Universitätsplatz, Magdeburg, Deutschland, Germany.

出版信息

J Med Imaging (Bellingham). 2018 Jan;5(1):013506. doi: 10.1117/1.JMI.5.1.013506. Epub 2018 Feb 7.

Abstract

The accuracy of Monte Carlo (MC) simulations in estimating the computed tomography radiation dose is highly dependent on the proprietary x-ray source information. To address this, this study develops a method to precisely estimate the x-ray spectrum and bowtie (BT) filter thickness of the x-ray source based on physical measurements and calculations. The static x-ray source of the CT localizer radiograph was assessed to measure the total filtration at the isocenter for the x-ray spectrum characterization and the BT profile (air-kerma values as a function of fan angle). With these values, the utilized BT filter in the localizer radiograph was assessed by integrating the measured air kerma in a full 360-deg cycle. The consistency observed between the integrated BT filter profiles and the directly measured profiles pointed to the similarity in the utilized BT filter in terms of thickness and material between the static and rotating x-ray geometries. Subsequently, the measured air kerma was used to calculate the BT filter thickness and was verified using MC simulations by comparing the calculated and measured air-kerma values, where a very good agreement was observed. This would allow a more accurate computed tomography simulation and facilitate the estimation of the dose delivered to the patients.

摘要

蒙特卡罗(MC)模拟在估算计算机断层扫描辐射剂量方面的准确性高度依赖于专有的X射线源信息。为了解决这一问题,本研究开发了一种基于物理测量和计算精确估算X射线源的X射线光谱和蝴蝶结(BT)滤波器厚度的方法。对CT定位片的静态X射线源进行评估,以测量等中心处的总过滤,用于X射线光谱表征和BT轮廓(空气比释动能值作为扇形角的函数)。利用这些值,通过在360度全周期内对测量的空气比释动能进行积分,评估定位片中使用的BT滤波器。在积分BT滤波器轮廓和直接测量轮廓之间观察到的一致性表明,在静态和旋转X射线几何结构中,所使用的BT滤波器在厚度和材料方面具有相似性。随后,利用测量的空气比释动能计算BT滤波器厚度,并通过比较计算和测量的空气比释动能值,使用MC模拟进行验证,结果显示两者非常吻合。这将使计算机断层扫描模拟更加准确,并有助于估算输送给患者的剂量。

相似文献

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Determination and verification of the x-ray spectrum of a CT scanner.CT扫描仪X射线光谱的测定与验证。
J Med Imaging (Bellingham). 2018 Jan;5(1):013506. doi: 10.1117/1.JMI.5.1.013506. Epub 2018 Feb 7.

本文引用的文献

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Non-invasive experimental determination of a CT source model.CT源模型的非侵入性实验测定
Phys Med. 2016 Jan;32(1):59-66. doi: 10.1016/j.ejmp.2015.09.006. Epub 2015 Oct 24.

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