首页> 外文期刊>Vision Research: An International Journal in Visual Science >Post-saccadic oscillations in eye movement data recorded with pupil-based eye trackers reflect motion of the pupil inside the iris
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Post-saccadic oscillations in eye movement data recorded with pupil-based eye trackers reflect motion of the pupil inside the iris

机译:使用基于瞳孔的眼动仪记录的眼动数据的眼跳后振荡反映了虹膜内瞳孔的运动

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摘要

Current video eye trackers use information about the pupil center to estimate orientation and movement of the eye. While dual Purkinje eye trackers suffer from lens wobble and scleral search coils may be influenced by contact lens slippage directly after saccades, it is not known whether pupil-based eye trackers produces similar artifacts in the data. We recorded eye movements from participants making repetitive, horizontal saccades and compared the movement in the data with pupil- and iris movements extracted from the eye images. Results showed that post-saccadic instabilities clearly exist in data recorded with a pupil-based eye tracker. They also exhibit a high degree of reproducibility across saccades and within participants. While the recorded eye movement data correlated well with the movement of the pupil center, the iris center showed only little post-saccadic movement. This means that the pupil moves relative to the iris during post-saccadic eye movements, and that the eye movement data reflect pupil movement rather than eyeball rotation. Besides introducing inaccuracies and additional variability in the data, the pupil movement inside the eyeball influences the decision of when a saccade should end and the subsequent fixation should begin, and consequently higher order analyses based on fixations and saccades.
机译:当前的视频眼动仪使用有关瞳孔中心的信息来估计眼睛的方向和运动。尽管双Purkinje眼动仪在晶状体摆动后可能会直接受到隐形眼镜打滑的影响,而巩膜搜索线圈可能会受到晶状体摆动的影响,但基于瞳孔的眼动仪是否会在数据中产生类似的伪像,这是未知的。我们记录了重复进行水平扫视的参与者的眼睛运动,并将数据中的运动与从眼睛图像中提取的瞳孔和虹膜运动进行了比较。结果表明,使用基于瞳孔的眼动仪记录的数据中明显存在眼后震荡。它们在扫视范围内和参与者内也表现出高度的可重复性。虽然记录的眼睛运动数据与瞳孔中心的运动很好地相关,但虹膜中心仅显示了很少的眼后运动。这意味着在眼跳后眼球运动期间,瞳孔相对于虹膜运动,并且眼动数据反映了瞳孔运动,而不是眼球旋转。除了在数据中引入不准确性和额外的可变性之外,眼球内部的瞳孔移动还会影响扫视何时结束和随后的注视应开始的决定,因此会基于注视和扫视进行更高阶的分析。

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