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首页> 外文期刊>Vision Research: An International Journal in Visual Science >The influence of crystalline lens accommodation on post-saccadic oscillations in pupil-based eye trackers
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The influence of crystalline lens accommodation on post-saccadic oscillations in pupil-based eye trackers

机译:晶状体适应性对基于瞳孔的眼动仪的继发性震荡的影响

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It is well known that the crystalline lens (henceforth lens) can oscillate (or 'wobble') relative to the eyeball at the end of saccades. Recent research has proposed that such wobbling of the lens is a source of post-saccadic oscillations (PSOs) seen in data recorded by eye trackers that estimate gaze direction from the location of the pupil. Since the size of the lens wobbles increases with accommodative effort, one would predict a similar increase of PSO-amplitude in data recorded with a pupil based eye tracker. In four experiments, we investigated the role of lens accommodation on PSOs in a video-based eye tracker. In Experiment 1, we replicated previous results showing that PSO-amplitudes increase at near viewing distances (large vergence angles), when the lens is highly accommodated. In Experiment 2a, we manipulated the accommodative state of the lens pharmacologically using eye drops at a fixed viewing distance and found, in contrast to Experiment 1, no significant difference in PSO-amplitude related to the accommodative state of the lens. Finally, in Experiment 2b, the effect of vergence angle was investigated by comparing PSO-amplitudes at near and far while maintaining a fixed lens accommodation. Despite the pharmacologically fixed degree of accommodation, PSO-amplitudes were systematically larger in the near condition. In summary, PSOs cannot exhaustively be explained by lens wobbles. Possible confounds related to pupil size and eye-camera angle are investigated in Experiments 3 and 4, and alternative mechanisms behind PSOs are probed in the discussion. (C) 2014 Elsevier Ltd. All rights reserved.
机译:众所周知,晶状体(以下称为“晶状体”)可以在扫视结束时相对于眼球摆动(或“摆动”)。最近的研究表明,这种晶状体摆动是眼动仪记录的数据中出现的继发性震荡(PSO)的来源,眼动仪从瞳孔的位置估计视线方向。由于晶状体的大小随调节力的增加而增加,因此人们可以预测,使用基于瞳孔的眼动仪记录的数据中PSO幅值也会有类似的增加。在四个实验中,我们研究了基于视频的眼动仪中镜片调节对PSO的作用。在实验1中,我们重复了以前的结果,表明当高度容纳镜头时,PSO振幅在近距离观看时(大的发散角)会增加。在实验2a中,我们使用药眼在固定的观察距离处通过药理作用调节了晶状体的调节状态,与实验1相比,我们发现与晶状体的调节状态相关的PSO振幅没有显着差异。最后,在实验2b中,通过比较近端和远端的PSO振幅同时保持固定的晶状体适应性,研究了发散角的影响。尽管药理学上调节的程度固定,但在近况下PSO振幅系统地较大。总而言之,无法通过镜头摆动来详尽地解释PSO。在实验3和4中研究了与瞳孔大小和眼相机角度有关的可能混淆,并在讨论中探究了PSO背后的替代机制。 (C)2014 Elsevier Ltd.保留所有权利。

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