Display technology for radiology

M Weibrecht
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Abstract

Objectives

A brief overview on the operating principles of current display technologies, namely catho-de-ray-tube (CRT) monitors and active-matrix liquid crystal displays (AMLCD), will be given. Physical properties having major impact on the perceived image quality, and respective measurement procedures will be described. Based on this introduction, the results of the evaluation of several displays will be discussed.

Materials and methods

The luminance output of displays, veiling glare, and reflected ambient light were measured with a high precision photometer by LMT (L1003). Resolution measurements were performed with a scientific CCD camera system. The images of the CCD camera were object to various calibration procedures and feature extraction algorithms developed at Aachen.

Results

The highest overall image quality is provided by monochrome CRT displays. However, the latest generation of LCDs is almost similar in terms of resolution. Yet, the LCD technology suffers from severe drawbacks in the gray-scale rendition.

Conclusion

Although LCD technology is developing very rapidly, it has not yet achieved the quality to replace standard displays based on CRTs. Standard computer monitors show least quality and require sophisticated image processing to be employed in medical imaging.

放射学显示技术
目的简要介绍当前显示技术,即阴极射线管(CRT)显示器和有源矩阵液晶显示器(AMLCD)的工作原理。对感知图像质量有重大影响的物理特性,以及各自的测量程序将被描述。在此基础上,将讨论几种显示器的评估结果。材料和方法采用高精度光度计,通过LMT (L1003)测量显示器输出亮度、遮挡眩光和反射环境光。分辨率测量是用科学的CCD相机系统进行的。CCD相机的图像是亚琛开发的各种校准程序和特征提取算法的对象。结果单色CRT显示器提供了最高的整体图像质量。然而,最新一代的液晶显示器在分辨率方面几乎是相似的。然而,LCD技术在灰度呈现方面存在严重缺陷。结论LCD技术虽然发展迅速,但还没有达到取代基于crt的标准显示器的质量。标准的计算机显示器显示质量最低,并且需要复杂的图像处理才能用于医学成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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