Yamada Seigo, Hirata Yoshiharu, Ishii Rie, Ogawa Toshihide
Division of Clinical Radiology, Tottori University Hospital, 36-1 Nishi-Machi, Yonago, Tottori, Japan.
Radiol Phys Technol. 2011 Jul;4(2):128-33. doi: 10.1007/s12194-011-0111-8. Epub 2011 Feb 17.
Liquid-crystal displays (LCDs) used for medical imaging, such as luminance characteristics and panel surface processing, have been developed as a medium substituting for film. There are various models of and specifications for display, but those compatible with high-resolution radiographic diagnostic images have been required with the recent progression of high-resolution modalities. Displays are necessary for faithful presentation of radiographic diagnostic images acquired by X-ray systems. In independent sub-pixel driving (ISD) technology, aiming at high-resolution display, three sub-pixels contained in one pixel of the LCD independently display images, which increases the threefold resolutions in direction of the sub-pixels, facilitating faithful image display with less curtailed pixels. This is a new display technology which may improve the diagnostic performance with regard to reading of medical images. We evaluated the characteristics of ISD technology and performed a visual evaluation of phantom images to investigate its usefulness. After confirming the physical properties of LCDs, we performed a visual evaluation of CDMAM phantom images employing the calculated image quality figure (IQF). The detectability of 15 mega-sub-pixel (15 MsP) significantly improved despite the specification being 5 mega-pixel (5 MP), and that of 9 MsP was higher than that of 5 MP despite the specification being 3 MP. The usefulness of ISD for 6 MsP was also confirmed. Therefore, ISD technology was useful for all LCDs. ISD technology markedly advanced the LCD display performance for medical use.
用于医学成像的液晶显示器(LCD),如亮度特性和面板表面处理等方面,已被开发用作替代胶片的介质。显示器有各种型号和规格,但随着高分辨率成像模式的发展,需要与高分辨率射线照相诊断图像兼容的显示器。显示器对于如实呈现由X射线系统获取的射线照相诊断图像是必不可少的。在旨在实现高分辨率显示的独立子像素驱动(ISD)技术中,LCD一个像素中包含的三个子像素独立显示图像,这在子像素方向上使分辨率提高了三倍,有助于在减少像素裁剪的情况下如实显示图像。这是一种新的显示技术,可能会提高医学图像读取的诊断性能。我们评估了ISD技术的特性,并对体模图像进行了视觉评估,以研究其有用性。在确认LCD的物理特性后,我们使用计算出的图像质量因子(IQF)对CDMAM体模图像进行了视觉评估。尽管规格为500万像素(5MP),但1500万子像素(15MsP)的可检测性显著提高,并且尽管规格为300万像素(3MP),9MsP的可检测性高于5MP。6MsP的ISD的有用性也得到了证实。因此,ISD技术对所有LCD都很有用。ISD技术显著提升了用于医学用途的LCD的显示性能。