Experimental Psychology, Helmholtz Institute, Faculty of Social and Behavioral Sciences, Utrecht University, Utrecht, The Netherlands.
Invest Ophthalmol Vis Sci. 2022 Feb 1;63(2):20. doi: 10.1167/iovs.63.2.20.
It is unclear how the iris deforms during changes in pupil size. Here, we report an application of a multi-feature iris tracking method, which we call irissometry, to investigate how the iris deforms and affects the eye position signal as a function of pupil size.
To evoke pupillary responses, we repeatedly presented visual and auditory stimuli to healthy participants while we additionally recorded their right eye with a macro lens-equipped camera. We tracked changes in iris surface structure between the pupil and sclera border (limbus) by calculating local densities (distance between feature points) across evenly spaced annular iris regions.
The time analysis of densities showed that the inner regions of the iris stretched more strongly as compared with the outer regions of the iris during pupil constrictions. The pattern of iris densities across eccentricities and pupil size showed highly similar patterns across participants, highlighting the robustness of this elastic property. Importantly, iris-based eye position detection led to more stable signals than pupil-based detection.
The iris regions near the pupil appear to be more elastic than the outer regions near the sclera. This elastic property explains the instability of the pupil border and the related position errors induced by eye movement and pupil size in pupil-based eye-tracking. Tracking features in the iris produce more robust eye position signals. We expect that irissometry may pave the way to novel eye trackers and diagnostic tools in ophthalmology.
目前尚不清楚瞳孔大小变化时虹膜如何变形。在这里,我们报告了一种多特征虹膜跟踪方法(我们称之为虹膜测量)的应用,该方法用于研究虹膜如何变形以及如何随着瞳孔大小的变化影响眼睛位置信号。
为了引起瞳孔反应,我们反复向健康参与者呈现视觉和听觉刺激,同时用配备微距镜头的相机记录他们的右眼。我们通过计算在均匀间隔的环形虹膜区域内的局部密度(特征点之间的距离)来跟踪虹膜表面结构从瞳孔到巩膜边界(角膜缘)的变化。
密度的时间分析表明,与瞳孔收缩时虹膜的外部区域相比,虹膜的内部区域拉伸得更强。在不同的离轴距离和瞳孔大小下,虹膜密度的分布模式在参与者之间高度相似,突出了这种弹性特性的稳健性。重要的是,基于虹膜的眼睛位置检测产生的信号比基于瞳孔的检测更稳定。
靠近瞳孔的虹膜区域似乎比靠近巩膜的外部区域更有弹性。这种弹性特性解释了基于瞳孔的眼动跟踪中瞳孔边界的不稳定性以及由眼球运动和瞳孔大小引起的相关位置误差。跟踪虹膜中的特征可产生更稳健的眼睛位置信号。我们预计虹膜测量可能为眼科领域的新型眼动跟踪器和诊断工具铺平道路。