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Objective assessment of image quality in conventional and digital mammography taking into account dynamic range

机译:考虑到动态范围,对常规和数字乳腺X射线摄影术的图像质量进行客观评估

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摘要

The goal of this work is to develop a method to objectively compare the performance of a digital and a screen-film mammography system in terms of image quality. The method takes into account the dynamic range of the image detector, the detection of high and low contrast structures, the visualisation of the images and the observer response. A test object, designed to represent a compressed breast, was constructed from various tissue equivalent materials ranging from purely adipose to purely glandular composition. Different areas within the test object permitted the evaluation of low and high contrast detection, spatial resolution and image noise. All the images (digital and conventional) were captured using a CCD camera to include the visualisation process in the image quality assessment. A mathematical model observer (non-prewhitening matched filter), that calculates the detectability of high and low contrast structures using spatial resolution, noise and contrast, was used to compare the two technologies. Our results show that for a given patient dose, the detection of high and low contrast structures is significantly better for the digital system than for the conventional screen-film system studied. The method of using a test object with a large tissue composition range combined with a camera to compare conventional and digital imaging modalities can be applied to other radiological imaging techniques. In particular it could be used to optimise the process of radiographic reading of soft copy images
机译:这项工作的目的是开发一种方法,可以从图像质量方面客观地比较数字和胶片X线摄影系统的性能。该方法考虑了图像检测器的动态范围,高低对比度结构的检测,图像的可视化以及观察者的响应。从纯脂肪到纯腺体组成的各种组织等效材料构造了一个测试对象,旨在代表受压的乳房。测试对象内的不同区域允许评估低对比度和高对比度检测,空间分辨率和图像噪声。所有图像(数字图像和常规图像)均使用CCD相机捕获,以将可视化过程包括在图像质量评估中。使用数学模型观察器(非预增白匹配滤波器)使用空间分辨率,噪声和对比度来计算高对比度和低对比度结构的可检测性,以比较这两种技术。我们的结果表明,对于给定的患者剂量,数字系统的高对比度和低对比度结构的检测要比研究的常规屏幕胶片系统好得多。将具有大组织组成范围的测试对象与照相机结合使用以比较常规成像方式和数字成像方式的方法可以应用于其他放射线成像技术。特别是,它可以用于优化软拷贝图像的射线照相读取过程

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