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X射线CT扫描仪蒙特卡罗模拟的现状与新视野

Current status and new horizons in Monte Carlo simulation of X-ray CT scanners.

作者信息

Zaidi Habib, Ay Mohammad Reza

机构信息

Division of Nuclear Medicine, Geneva University Hospital, 1211 Geneva 4, Switzerland.

出版信息

Med Biol Eng Comput. 2007 Sep;45(9):809-17. doi: 10.1007/s11517-007-0207-9. Epub 2007 Jul 5.

Abstract

With the advent of powerful computers and parallel processing including Grid technology, the use of Monte Carlo (MC) techniques for radiation transport simulation has become the most popular method for modeling radiological imaging systems and particularly X-ray computed tomography (CT). The stochastic nature of involved processes such as X-ray photons generation, interaction with matter and detection makes MC the ideal tool for accurate modeling. MC calculations can be used to assess the impact of different physical design parameters on overall scanner performance, clinical image quality and absorbed dose assessment in CT examinations, which can be difficult or even impossible to estimate by experimental measurements and theoretical analysis. Simulations can also be used to develop and assess correction methods and reconstruction algorithms aiming at improving image quality and quantitative procedures. This paper focuses mainly on recent developments and future trends in X-ray CT MC modeling tools and their areas of application. An overview of existing programs and their useful features will be given together with recent developments in the design of computational anthropomorphic models of the human anatomy. It should be noted that due to limited space, the references contained herein are for illustrative purposes and are not inclusive; no implication that those chosen are better than others not mentioned is intended.

摘要

随着功能强大的计算机以及包括网格技术在内的并行处理技术的出现,蒙特卡罗(MC)技术在辐射传输模拟中的应用已成为放射成像系统建模,尤其是X射线计算机断层扫描(CT)建模中最受欢迎的方法。诸如X射线光子产生、与物质相互作用以及探测等相关过程的随机性,使得MC成为精确建模的理想工具。MC计算可用于评估不同物理设计参数对CT检查中整体扫描仪性能、临床图像质量和吸收剂量评估的影响,而这些通过实验测量和理论分析可能难以甚至无法估计。模拟还可用于开发和评估旨在提高图像质量和定量程序的校正方法及重建算法。本文主要关注X射线CT MC建模工具的最新发展和未来趋势及其应用领域。将概述现有程序及其有用特性,以及人体解剖结构计算拟人模型设计的最新进展。需要注意的是,由于篇幅有限,本文所含参考文献仅用于说明目的,并不全面;无意暗示所选用的参考文献比未提及的其他文献更好。

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