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An evaluation of organic light emitting diode monitors for medical applications: Great timing but luminance artifacts

机译:对医疗应用有机发光二极管监视器的评估:定时大但亮度伪影

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摘要

>Purpose: In contrast to the dominant medical liquid crystal display (LCD) technology, organic light-emitting diode (OLED) monitors control the display luminance via separate light-emitting diodes for each pixel and are therefore supposed to overcome many previously documented temporal artifacts of medical LCDs. We assessed the temporal and luminance characteristics of the only currently available OLED monitor designed for use in the medical treatment field (SONY PVM2551MD) and checked the authors’ main findings with another SONY OLED device (PVM2541).>Methods: Temporal properties of the photometric output were measured with an optical transient recorder. Luminances of the three color primaries and white for all 256 digital driving levels (DDLs) were measured with a spectroradiometer. Between the luminances of neighboring DDLs, just noticeable differences were calculated according to a perceptual model developed for medical displays. Luminances of full screen (FS) stimuli were compared to luminances of smaller stimuli with identical DDLs.>Results: All measured luminance transition times were below 300 μs. Luminances were independent of the luminance in the preceding frame. However, for the single color primaries, up to 50.5% of the luminances of neighboring DDLs were not perceptually distinguishable. If two color primaries were active simultaneously, between 36.7% and 55.1% of neighboring luminances for increasing DDLs of the third primary were even decreasing. Moreover, luminance saturation effects were observed when too many pixels were active simultaneously. This effect was strongest for white; a small white patch was close to 400 cd/m2, but in FS the luminance of white saturated at 162 cd/m2. Due to different saturation levels, the luminance of FS green and FS yellow could exceed the luminance of FS white for identical DDLs.>Conclusions: The OLED temporal characteristics are excellent and superior to those of LCDs. However, the OLEDs revealed severe perceptually relevant artifacts with implications for applicability to medical imaging.
机译:>目的:与主流的医学液晶显示器(LCD)技术相比,有机发光二极管(OLED)监视器通过每个像素的单独发光二极管来控制显示亮度,因此应该克服了许多先前记录的医用LCD临时伪像。我们评估了目前唯一设计用于医疗领域的OLED监视器(SONY PVM2551MD)的时间和亮度特性,并使用另一款SONY OLED设备(PVM2541)检查了作者的主要发现。>方法:用光学瞬态记录仪测量光度输出的时间特性。使用分光辐射计测量了所有256个数字驱动级别(DDL)的三种原色和白色的亮度。在相邻DDL的亮度之间,根据为医学显示器开发的感知模型,仅计算出明显的差异。将全屏(FS)刺激的亮度与具有相同DDL的较小刺激的亮度进行了比较。>结果:所有测得的亮度转换时间均低于300μs。亮度与前一帧中的亮度无关。但是,对于单色原色,相邻DDL的亮度的高达50.5%在感知上是无法区分的。如果两个颜色原色同时激活,则用于增加第三原色的DDL的相邻亮度的36.7%至55.1%之间甚至会降低。此外,当太多像素同时处于活动状态时,观察到亮度饱和效应。这种效果对白色最为明显。一个小的白色斑块接近400 cd / m 2 ,但是在FS中,白色的亮度饱和在162 cd / m 2 。由于相同的DDL,饱和度水平不同,因此FS绿色和FS黄色的亮度可能会超过FS白色。>结论: OLED的时间特性非常好,优于LCD。但是,OLED显示出严重的感知相关伪影,对医学成像的适用性产生了影响。

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