Consejo Nacional de Investigaciones Científicas y Técnicas, Centro Atómico Bariloche (CNEA), 8400 Bariloche, Río Negro, Argentina.
Neufisur-Departamento de Física, Universidad Nacional del Sur-IFISUR, Bahía Blanca 8000, Buenos Aires, Argentina.
Phys Rev Lett. 2018 Apr 27;120(17):178101. doi: 10.1103/PhysRevLett.120.178101.
Recent studies on the human eye indicate that the pupil moves inside the eyeball due to deformations of the iris. Here we show that this phenomenon can be originated by inertial forces undergone by the iris during the rotation of the eyeball. Moreover, these forces affect the iris in such a way that the pupil behaves effectively as a massive particle. To show this, we develop a model based on the Newton equation on the noninertial reference frame of the eyeball. The model allows us to reproduce and interpret several important findings of recent eye-tracking experiments on saccadic movements. In particular, we get correct results for the dependence of the amplitude and period of the postsaccadic oscillations on the saccade size and also for the peak velocity. The model developed may serve as a tool for characterizing eye properties of individuals.
最近对人眼的研究表明,由于虹膜的变形,瞳孔在眼球内移动。在这里,我们表明,这种现象可能是由于眼球旋转时虹膜所受的惯性力引起的。此外,这些力以这样一种方式影响虹膜,即瞳孔有效地表现为一个质量粒子。为了证明这一点,我们基于眼球非惯性参考系上的牛顿方程建立了一个模型。该模型允许我们再现和解释最近关于眼跳运动的眼动追踪实验的几个重要发现。特别是,我们得到了后眼跳振荡的幅度和周期对眼跳大小的依赖性以及峰值速度的正确结果。所开发的模型可用作个体眼睛特性的特征化工具。