Haslwanter T, Moore S T
Department of Psychology, University of Sydney, NSW, Australia.
IEEE Trans Biomed Eng. 1995 Nov;42(11):1053-61. doi: 10.1109/10.469371.
Polar cross-correlation is a commonly used technique for determination of torsional eye position from video images. At eccentric eye positions, the projection of the sampling window onto the image plane of the camera is translated and deformed due to the spherical shape of the eyeball. In this paper, we extend the polar cross-correlation technique by developing the formulas required to determine the correct location and shape of the sampling window at all eye positions. These formulas also allow the representation of three-dimensional eye position in Fick-angles, which are commonly used in oculomotor research. A numerical simulation shows the size of the errors in ocular torsion if the spherical geometry of the eye is not considered. Other effects which can affect the accuracy of video-based eye position measurements are also discussed.
极坐标互相关是一种常用于从视频图像确定眼球扭转位置的技术。在眼球偏心位置时,由于眼球的球形形状,采样窗口在相机图像平面上的投影会发生平移和变形。在本文中,我们通过推导在所有眼球位置确定采样窗口的正确位置和形状所需的公式,扩展了极坐标互相关技术。这些公式还允许以眼动研究中常用的菲克角来表示三维眼球位置。数值模拟显示了如果不考虑眼球的球形几何形状时,眼球扭转误差的大小。还讨论了其他可能影响基于视频的眼球位置测量准确性的因素。