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Objective analysis of ultrasound images by use of a computational observer

机译:使用计算观察器对超声图像进行客观分析

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The design, implementation, and testing of a computational observer method for objective evaluation of ultrasound images are presented. The method uses digitized ultrasound B-scan images of a test phantom (the contrast-detail phantom), and is able to calculate the detectability of a target (signal) from its background (background noise). A quantitative detectability index, based on the measured signal-to-noise ratio of the image data, that is measured for both the human and the computational observer on the same scale is generated. It is shown that the computational observer (CO) method may be a more useful, objective way of evaluating ulrasound images and imaging systems than methods that rely solely on human observers. It may also be applicable to other types (i.e. other than ultrasound) of imaging systems which produce noisy images. The relevance of the CO method when compared to human observer two-alternative-forced-choice (2AFC) readings of the same data by showing a high correlation between the CO detectability results and those of human observers for the same set of images. The method is (1) quantitative, (2) reproducible, (3) absolute, (4) takes into account, and can calculate the value of TPF and FPF for each target, for the given system, and (5) speeds up the evaluation of an image or imaging system (compared to using human observers), given the right conditions and equipment.
机译:介绍了用于超声图像客观评估的计算观察器方法的设计,实现和测试。该方法使用测试体模(对比细节体模)的数字化超声B扫描图像,并能够根据其背景(背景噪声)计算目标(信号)的可检测性。基于所测量的图像数据的信噪比,以相同的比例针对人类和计算观察者生成定量的可检测性指标。结果表明,与仅依靠人类观察者的方法相比,计算观察者(CO)方法可能是一种更有用,更客观的评估超声图像和成像系统的方法。它也可以适用于产生噪声图像的其他类型的成像系统(即,除超声之外)。通过显示CO检测结果与人类观察者对同一组图像的高度相关性,CO方法与人类观察者的两个或两个以上的强制选择(2AFC)读数相比具有较高的相关性。该方法是(1)定量,(2)可重现,(3)绝对,(4)考虑到,并且可以为给定系统计算每个目标的TPF和FPF值,并且(5)加快速度。给定正确的条件和设备,对图像或成像系统进行评估(与使用人工观察者相比)。

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