首页> 外文会议>PACS and Imaging Informatics; Progress in Biomedical Optics and Imaging; vol.7 no.31 >A Method for Reduction of Eye Fatigue by Optimizing the Ambient Light Conditions in Radiology Reading Rooms
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A Method for Reduction of Eye Fatigue by Optimizing the Ambient Light Conditions in Radiology Reading Rooms

机译:优化放射室阅览室环境光条件的减少眼疲劳的方法

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Ambient lighting in soft-copy reading rooms are currently kept at low values to preserve contrast rendition in the dark regions of a medical image. Low illuminance levels, however, create inadequate viewing conditions and may also cause eye-strain. This eye-strain may be attributed to notable variations in luminance adaptation state of the reader's eyes when moving the gaze intermittently between the brighter display and darker surrounding surfaces. This paper presents a methodology to optimize the lighting conditions of reading rooms to reduce visual fatigue by minimizing this variation by exploiting the properties of LCDs with low diffuse reflection coefficients and high luminance ratio. First, a computational model was developed to determine a global luminance adaptation value, L_(adp), when viewing a medical image on display. The model is based on the diameter of the pupil size which depends on the luminance of the observed object. Second, this value was compared with the luminance reflected off surrounding surfaces, L_s, under various conditions of room illuminance, E, different values of diffuse reflection coefficients of surrounding surfaces, R_s, and calibration settings of a typical LCD. The results suggest that for typical luminance settings of current LCDs, it is possible to raise ambient illumination to minimize differences in eye adaptation, potentially reducing visual fatigue while also complying with the TG18 specifications for controlled contrast rendition. Specifically, room illumination in the 75-150 lux range and surface diffuse reflection coefficients in the practical range of 0.13-0.22 sr~(-1) provide an ideal setup for typical LCDs. Furthermore, displays with lower diffuse reflectivity and with higher inherent luminance ratio than currently possible in most LCDs can potentially help further decrease eye fatigue, providing an improved ergonomic viewing conditions in reading rooms.
机译:目前,软拷贝阅览室中的环境照明保持较低的值,以在医学图像的黑暗区域中保持对比再现。但是,低照度水平会导致观看条件不足,并可能导致眼睛疲劳。当在较亮的显示器和较暗的周围表面之间间歇地移动凝视时,该眼睛疲劳可归因于读者眼睛的亮度适应状态的显着变化。本文提出了一种方法,可以通过利用具有低漫反射系数和高亮度比的LCD的特性来最大程度地减少这种变化,来优化阅览室的照明条件,从而减少视觉疲劳。首先,开发了一种计算模型,用于在查看显示器上的医学图像时确定全局亮度适应值L_(adp)。该模型基于瞳孔大小的直径,该直径取决于所观察对象的亮度。其次,将该值与在各种房间照度E,周围表面的漫反射系数的不同值R_s和典型LCD的校准设置下,从周围表面反射的亮度L_s进行比较。结果表明,对于当前LCD的典型亮度设置,可以提高环境照度,以最大程度地减少眼睛适应的差异,从而潜在地减少视觉疲劳,同时还符合TG18规范的受控对比度再现。具体而言,在75-150 lux范围内的室内照明和在0.13-0.22 sr〜(-1)的实际范围内的表面漫反射系数为典型的LCD提供了理想的设置。此外,比大多数LCD当前具有更低的漫反射率和更高的固有亮度比的显示器,有可能潜在地帮助进一步减轻眼睛疲劳,从而在阅览室中提供更符合人体工程学的观看条件。

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