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Detectability of the diagonal direction in the assessment of medical images using a high‑brightness liquid crystal display monitor

机译:使用高亮度液晶显示器监视器评估医学图像的对角线方向的可检测性

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摘要

Liquid crystal display (LCD) monitors show a homogenous quadratic pattern in the number of pixels, size, and dimensions. However, their modulation transfer function (MTF) has a non-isotropic effect in the vertical, horizontal, and diagonal directions on the screen from the shape and pattern of arrangement of pixels. Moreover, the MTF of the human eye differs in spatial frequency response directivity among individuals. In this study, the high-brightness LCD monitor detectability was physically simulated and visually examined throughout the system, including the imaging system. Furthermore, the influence of anisotropy of the LCD monitor was evaluated. The MTF of the LCD monitor was measured by acquiring a bar pattern using a digital camera with sufficiently small pixels in the vertical, horizontal, and diagonal directions and by performing interpolation processing through waveform reproduction and frequency analysis. The detectability of the LCD monitor was verified throughout the system, including the imaging system. Radiographs of the rectangular wave chart (0.5-10 LP/mm) were obtained in the vertical, horizontal, and diagonal (45 degrees) directions to assess the perceivable limit of the human eye (LP/mm). The spatial resolution of the LCD monitor in the diagonal direction was higher than that in the vertical or horizontal direction, which was in good agreement with the results of the profile analysis and visual evaluation.
机译:液晶显示器(LCD)监视器在像素数,尺寸和尺寸的数量中显示出同质的二次模式。然而,它们的调制转移函数(MTF)在屏幕上的垂直,水平和对角线方向上具有非各向同性效果,从像素的形状和图案的形状和图案的形状和图案。此外,人眼的MTF在个体之间的空间频率响应方向性的不同之处。在本研究中,在整个系统中物理模拟和目视检查的高亮度LCD监测性可检测性,包括成像系统。此外,评估了LCD监测仪的各向异性的影响。通过使用垂直,水平和对角线方向上的数码相机获取条形图,通过在垂直,水平和对角线方向上的具有足够小的像素的情况下获得并通过波形再现和频率分析来执行LCD显示器的MTF来测量LCD监视器的MTF。在整个系统中验证了LCD监视器的可检测性,包括成像系统。在垂直,水平和对角线(45度)方向上获得矩形波图(0.5-10LP / mm)的X光片,以评估人眼的可感知极限(LP / mm)。对角线方向上的LCD监视器的空间分辨率高于垂直或水平方向的空间分辨率,这与概况分析和视觉评估的结果非常一致。

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