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Directional eye fixation sensor using birefringence-based foveal detection

机译:使用基于双折射的中央凹检测的定向眼固定传感器

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摘要

We recently developed and reported an eye fixation monitor that detects the fovea by its radial orientation of birefringent nerve fibers. The instrument used a four-quadrant photodetector and a normalized difference function to check for a best match between the detector quadrants and the arms of the bow-tie pattern of polarization states surrounding the fovea. This function had a maximum during central fixation but could not tell where the subject was looking relative to the center. We propose a linear transformation to obtain horizontal and vertical eye position coordinates from the four photodetector signals, followed by correction based on a priori calibration information. The method was verified on both a computer model and on human eyes. The major advantage of this new eye-tracking method is that it uses true information coming from the fovea, rather than reflections from other structures, to identify the direction of foveal gaze.
机译:我们最近开发并报告了一种眼部固定监视器,该监视器通过双折射神经纤维的径向定位来检测中央凹。该仪器使用四象限光电探测器和归一化差函数来检查探测器象限与中央凹周围偏振态的蝴蝶结图案的臂之间的最佳匹配。在中央固定期间,此功能最大,但无法分辨对象相对于中央的位置。我们提出了一种线性变换,以从四个光电探测器信号获得水平和垂直眼睛位置坐标,然后根据先验​​校准信息进行校正。该方法已在计算机模型和人眼上得到验证。这种新的眼动追踪方法的主要优点是,它使用来自中央凹的真实信息,而不是其他结构的反射来识别中央凹注视的方向。

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