Sakatani Tomoya, Isa Tadashi
Department of Physiological Sciences, Graduate University for Advanced Studies, Myodaiji, Okazaki 444-8585, Japan.
Neurosci Res. 2004 May;49(1):123-31. doi: 10.1016/j.neures.2004.02.002.
We newly developed an infrared video-oculographic system for on-line tracking of the eye position in awake and head-fixed mice, with high temporal resolution (240 Hz). The system consists of a commercially available high-speed CCD camera and an image processing software written in LabVIEW run on IBM-PC with a plug-in video grabber board. This software calculates the center and area of the pupil by fitting circular function to the pupil boundary, and allows robust and stable tracking of the eye position in small animals like mice. On-line calculation is performed to obtain reasonable circular fitting of the pupil boundary even if a part of the pupil is covered with shadows or occluded by eyelids or corneal reflections. The pupil position in the 2-D video plane is converted to the rotation angle of the eyeball by estimating its rotation center based on the anatomical eyeball model. By this recording system, it is possible to perform quantitative analysis of rapid eye movements such as saccades in mice. This will provide a powerful tool for analyzing molecular basis of oculomotor and cognitive functions by using various lines of mutant mice.
我们新开发了一种红外视频眼动追踪系统,用于在线追踪清醒且头部固定的小鼠的眼睛位置,具有高时间分辨率(240Hz)。该系统由一台商用高速CCD相机和一个用LabVIEW编写的图像处理软件组成,该软件在配备插件视频采集卡的IBM-PC上运行。该软件通过将圆形函数拟合到瞳孔边界来计算瞳孔的中心和面积,并能在小鼠等小动物中稳健且稳定地追踪眼睛位置。即使瞳孔的一部分被阴影覆盖、被眼睑遮挡或被角膜反射遮挡,也能进行在线计算以获得合理的瞳孔边界圆形拟合。基于解剖学眼球模型估计其旋转中心,将二维视频平面中的瞳孔位置转换为眼球的旋转角度。通过这个记录系统,可以对小鼠的快速眼动(如扫视)进行定量分析。这将为利用各种突变小鼠品系分析眼球运动和认知功能的分子基础提供一个强大的工具。