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腰椎X射线成像系统的研究与优化

A study and optimization of lumbar spine X-ray imaging systems.

作者信息

McVey G, Sandborg M, Dance D R, Alm Carlsson G

机构信息

Joint Department of Physics, The Royal Marsden NHS Trust, Fulham Road, London SW3 6JJ, UK.

出版信息

Br J Radiol. 2003 Mar;76(903):177-88. doi: 10.1259/bjr/52734084.

Abstract

A Monte Carlo program has been developed that incorporates a voxel phantom of an adult patient in a model of the complete X-ray imaging system, including the anti-scatter grid and screen-film receptor. This allows the realistic estimation of patient dose and the corresponding image (optical density map) for a wide range of equipment configurations. This paper focuses on the application of the program to lumbar spine anteroposterior and lateral screen-film examinations. The program has been applied to study the variation of physical image quality measures and effective dose for changing system parameters such as tube voltage, grid design and screen-film system speed. These variations form the basis for optimization of these system parameters. In our approach to optimization, the best systems are those that can match (or come close to) the calculated image quality measure of systems preferred in a recent European clinical trial, but with lower patient dose. The largest dose savings found were 21% for a 400 speed class system with a grid having a strip density of 40 cm(-1) and a grid ratio of 16. A further dose saving of 13% was possible when a 600 speed class system was employed. The best systems found from the optimization correspond to those recommended by the European Commission guidelines on image quality criteria for diagnostic radiographic images.

摘要

已开发出一个蒙特卡罗程序,该程序将成年患者的体素模型纳入完整的X射线成像系统模型中,包括反散射格栅和屏-片接收器。这使得能够针对广泛的设备配置,实际估算患者剂量和相应的图像(光学密度图)。本文重点关注该程序在腰椎前后位和侧位屏-片检查中的应用。该程序已用于研究诸如管电压、格栅设计和屏-片系统速度等系统参数变化时物理图像质量指标和有效剂量的变化情况。这些变化构成了优化这些系统参数的基础。在我们的优化方法中,最佳系统是那些能够匹配(或接近)近期欧洲一项临床试验中首选系统的计算图像质量指标,但患者剂量更低的系统。发现对于一个400速度级别的系统,使用条带密度为40 cm⁻¹且格栅比为16的格栅时,最大剂量节省为21%。当采用600速度级别的系统时,还可进一步节省13%的剂量。从优化中找到的最佳系统与欧盟委员会关于诊断放射图像质量标准的指南所推荐的系统一致。

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