Faculty of Medical and Human Sciences, University of Manchester, Manchester M13 9PL, UK.
J R Soc Interface. 2013 May 8;10(84):20130239. doi: 10.1098/rsif.2013.0239. Print 2013 Jul 6.
There are a multitude of applications using modern tablet computers for vision testing that are accessible to ophthalmology patients. While these may be of potential future benefit, they are often unsupported by scientific assessment. This report investigates the pertinent physical characteristics behind one of the most common highest specification tablet computers with regard to its capacity for vision testing. We demonstrate through plotting of a gamma curve that it is feasible to produce a precise programmable range of central luminance levels on the device, even with varying background luminance levels. It may not be possible to display very low levels of contrast, but carefully using the gamma curve information allows a reasonable range of contrast sensitivity to be tested. When the screen is first powered on, it may require up to 15 min for the luminance values to stabilize. Finally, luminance of objects varies towards the edge of the screen and when viewed at an angle. However, the resulting effective contrast of objects is less variable. Details of our assessments are important to developers, users and prescribers of tablet clinical vision tests. Without awareness of such findings, these tests may never reach satisfactory levels of clinical validity and reliability.
有许多应用程序使用现代平板电脑进行视力测试,可供眼科患者使用。虽然这些可能具有潜在的未来益处,但它们通常未经科学评估支持。本报告调查了最常见的一种规格最高的平板电脑背后的相关物理特性,以了解其进行视力测试的能力。我们通过绘制伽马曲线表明,即使背景亮度水平不同,也可以在设备上生成精确的可编程中心亮度水平范围。可能无法显示非常低的对比度,但通过仔细使用伽马曲线信息,可以测试合理的对比度灵敏度范围。当屏幕首次打开时,亮度值可能需要长达 15 分钟才能稳定。最后,屏幕边缘和从一定角度观看时,物体的亮度会发生变化。然而,物体的实际对比度变化较小。我们评估的细节对于平板电脑临床视力测试的开发者、用户和处方者很重要。如果不了解这些发现,这些测试可能永远无法达到令人满意的临床有效性和可靠性水平。