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胸部X线摄影的滤光轮均衡:计算机模拟

Filter wheel equalization for chest radiography: a computer simulation.

作者信息

Boone J M, Duryea J, Steiner R M

机构信息

Department of Radiology, University of California Davis Medical Center, Sacramento 95817, USA.

出版信息

Med Phys. 1995 Jul;22(7):1029-37. doi: 10.1118/1.597510.

Abstract

A chest radiographic equalization system using lung-shaped templates mounted on filter wheels is under development. Using this technique, 25 lung templates for each lung are available on two computer controlled wheels which are located in close proximity to the x-ray tube. The large magnification factor (> 10X) of the templates assures low-frequency equalization due to the blurring of the focal spot. A low-dose image is acquired without templates using a (generic) digital receptor, the image is analyzed, and the left and right lung fields are automatically identified using software developed for this purpose. The most appropriate left and right lung templates are independently selected and are positioned into the field of view at the proper location under computer control. Once the templates are positioned, acquisition of the equalized radiographic image onto film commences at clinical exposure levels. The templates reduce the exposure to the lung fields by attenuating a fraction of the incident x-ray fluence so that the exposure to the mediastinum and diaphragm areas can be increased without overexposing the lungs. A data base of 824 digitized chest radiographs was used to determine the shape of the specific lung templates, for both left and right lung fields. A second independent data base of 208 images was used to test the performance of the templates using computer simulations. The template shape characteristics derived from the clinical image data base are demonstrated. The detected exposure in the lung fields on conventional chest radiographs was found to be, on average, three times the detected exposure behind the diaphragm and mediastinum.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

一种使用安装在滤线轮上的肺形模板的胸部X线图像均衡系统正在研发中。利用该技术,两个计算机控制的轮子上各有25个针对每个肺的肺模板,轮子紧邻X射线管。模板的大放大倍数(>10倍)由于焦点模糊可确保低频均衡。使用(通用)数字接收器在不使用模板的情况下采集低剂量图像,对图像进行分析,并使用为此开发的软件自动识别左右肺野。独立选择最合适的左右肺模板,并在计算机控制下将其定位到视野中的适当位置。一旦模板定位好,就在临床曝光水平下开始将均衡后的X线图像采集到胶片上。模板通过衰减一部分入射X射线注量来减少对肺野的照射,这样在不使肺部过度曝光的情况下可以增加对纵隔和膈肌区域的照射。使用824张数字化胸部X线片的数据库来确定左右肺野特定肺模板的形状。使用208幅图像的第二个独立数据库通过计算机模拟来测试模板的性能。展示了从临床图像数据库得出的模板形状特征。发现在传统胸部X线片上肺野的检测照射量平均是膈肌和纵隔后方检测照射量的三倍。(摘要截短为250字)

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