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Configuration of automatic exposure control on mammography units for computed radiography to match patient dose of screen film systems

机译:计算乳房X线摄影单元对乳房X线摄影单元的自动曝光控制,以匹配屏幕膜系统患者剂量

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Computed radiography (CR) is considered a drop-in addition or replacement for traditional screen-film (SF) systems in digital mammography. Unlike other technologies, CR has the advantage of being compatible with existing mammography units. One of the challenges, however, is to properly configure the automatic exposure control (AEC) on existing mammography units for CR use. Unlike analogue systems, the capture and display of digital CR images is decoupled. The function of AEC is changed from ensuring proper and consistent optical density of the captured image on film to balancing image quality with patient dose needed for CR. One of the preferences when acquiring CR images under AEC is to use the same patient dose as SF systems. The challenge is whether the existing AEC design and calibration process—most of them proprietary from the X-ray systems manufacturers and tailored specifically for SF response properties—can be adapted for CR cassettes, in order to compensate for their response and attenuation differences. This paper describes the methods for configuring the AEC of three different mammography units models to match the patient dose used for CR with those that are used for a KODAK MIN-R 2000 SF System. Based on phantom test results, these methods provide the dose level under AEC for the CR systems to match with the dose of SF systems. These methods can be used in clinical environments that require the acquisition of CR images under AEC at the same dose levels as those used for SF systems.
机译:计算的射线照相(CR)被认为是数字乳房X线摄影中传统屏幕膜(SF)系统的另外或更换。与其他技术不同,CR的优点是与现有的乳房X线摄影单元兼容。然而,其中一个挑战是在现有的乳房X线摄影单元上正确配置自动曝光控制(AEC),用于CR使用。与模拟系统不同,数字CR图像的捕获和显示是解耦的。 AEC的功能从确保捕获图像的适当和一致的光密度在膜上与CR所需的患者剂量进行平衡图像质量。获取AEC下的CR图像时的偏好之一是使用与SF系统相同的患者剂量。挑战是现有的AEC设计和校准过程 - 大多数来自X射线系统制造商的专有版,专门针对SF响应性能定制 - 可以适用于CR盒,以补偿其响应和衰减差异。本文介绍了配置三种不同乳房X线摄影单元模型的AEC的方法,以匹配用于CR的患者剂量与用于柯达MIN-R 2000 SF系统的患者。基于幻像测试结果,这些方法为CR系统提供了AEC下的剂量水平,以与SF系统的剂量相匹配。这些方法可用于临床环境,该环境需要在AEC下以与用于SF系统的剂量水平的AEC下的CR图像采集。

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