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数字乳腺摄影的多参数优化

A multiparameter optimization of digital mammography.

作者信息

Court L E, Speller R

机构信息

Sira/UCL Postgraduate Centre, Sira Ltd, Chislehurst, Kent, UK.

出版信息

Phys Med Biol. 1995 Nov;40(11):1841-61. doi: 10.1088/0031-9155/40/11/006.

Abstract

Multiparameter optimizations have been carried out for a wide range of digital mammography system configurations and requirements, with the aim of optimizing the image quality for a given patient dose. These conditions include a range of slot widths for scanning mammography systems, exposure times from 1 to 10 s, focal spot sizes from 80 to 800 microns, a range of detector resolutions and noise levels, dose restrictions, patient thicknesses and targets, and x-ray tube targets. The influences of these on the optimum system configuration in terms of tube potential, filtration, source to patient distance and target magnification are discussed. It is demonstrated that x-ray tube power constraints can significantly restrict the optimum magnification for slot scanning systems, with the result that poor-resolution detectors are not suited for use in a scanning configuration, and that large-focal-spot-good-detector resolution combinations are more suitable. The use of a detector with increased width, raised tube potential and reduced amount of added filtration is shown to be helpful in reducing x-ray tube power limitations. It is shown that, in many cases, correct optimization can bring the detail SNR for an examination using a given detector-x-ray tube configuration to within 10-15% of the SNR achieved with the optimum combination. This gives the designer some scope to consider other factors such as cost and the implications of image size on storage space.

摘要

针对多种数字乳腺摄影系统配置和要求进行了多参数优化,目的是在给定患者剂量的情况下优化图像质量。这些条件包括扫描乳腺摄影系统的一系列狭缝宽度、1至10秒的曝光时间、80至800微米的焦点尺寸、一系列探测器分辨率和噪声水平、剂量限制、患者厚度和目标以及X射线管靶。讨论了这些因素对管电压、过滤、源到患者距离和靶放大倍数方面的最佳系统配置的影响。结果表明,X射线管功率限制会显著限制狭缝扫描系统的最佳放大倍数,因此分辨率较差的探测器不适合用于扫描配置,而大焦点-好探测器分辨率组合更合适。使用宽度增加、管电压提高和附加过滤量减少的探测器有助于减少X射线管功率限制。结果表明,在许多情况下,正确的优化可使使用给定探测器-X射线管配置进行检查的细节信噪比达到最佳组合所实现信噪比的10%-15%以内。这为设计者提供了一定空间来考虑其他因素,如成本以及图像大小对存储空间的影响。

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