School of Optometry and Vision Science, The University of Auckland, Auckland, New Zealand.
New Zealand National Eye Centre, The University of Auckland, Auckland, New Zealand.
Sci Rep. 2022 May 11;12(1):7734. doi: 10.1038/s41598-022-11152-5.
We set out to develop a simple objective test of functional colour vision based on eye movements made in response to moving patterns. We exploit the finding that while the motion of a colour-defined stimulus can be cancelled by adding a low-contrast luminance-defined stimulus moving in the opposite direction, the "equivalent luminance contrast" required for such cancellation is reduced when colour vision is abnormal. We used a consumer-grade infrared eye-tracker to measure eye movements made in response to coloured patterns drifting at different speeds. An automated analysis of these movements estimated individuals' red-green equiluminant point and their equivalent luminance contrast. We tested 34 participants: 23 colour vision normal controls, 9 deuteranomalous and 2 protanomalous individuals. We obtained reliable estimates of strength of directed eye movements (i.e. combined optokinetic and voluntary tracking) for stimuli moving at 16 deg/s and could use these data to classify participants' colour vision status with a sensitivity rate of 90.9% and a specificity rate of 91.3%. We conclude that an objective test of functional colour vision combining a motion-nulling technique with an automated analysis of eye movements can diagnose and assess the severity of protanopia and deuteranopia. The test places minimal demands on patients (who simply view a series of moving patterns for less than 90 s), requires modest operator expertise, and can be run on affordable hardware.
我们旨在开发一种基于对移动模式的眼动反应的简单、客观的功能性颜色视觉测试。我们利用这样一个发现,即虽然颜色定义的刺激的运动可以通过添加以相反方向移动的低对比度亮度定义的刺激来取消,但当颜色视觉异常时,这种取消所需的“等效亮度对比度”会降低。我们使用消费级红外眼动追踪器来测量对不同速度漂移的彩色图案的眼动反应。对这些运动的自动分析估计了个体的红-绿等亮平衡点和等效亮度对比度。我们测试了 34 名参与者:23 名颜色视觉正常对照者、9 名绿色弱个体和 2 名红色盲个体。我们获得了对以 16 度/秒移动的刺激的定向眼动(即综合视动和自主追踪)的可靠估计,并且可以使用这些数据以 90.9%的敏感性和 91.3%的特异性来分类参与者的颜色视觉状态。我们得出结论,结合运动消除技术和眼动自动分析的功能性颜色视觉客观测试可以诊断和评估红色盲和绿色弱的严重程度。该测试对患者的要求极低(只需在不到 90 秒的时间内观看一系列移动的图案),需要适度的操作员专业知识,并且可以在价格合理的硬件上运行。