Torsional component of microsaccades during fixation and quick phases during optokinetic stimulation.

IF 1.3 4区 心理学 Q3 OPHTHALMOLOGY Journal of Eye Movement Research Pub Date : 2020-10-20 DOI:10.16910/jemr.13.5.5
Shirin Sadeghpour, Jorge Otero-Millan
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引用次数: 1

Abstract

While many studies have characterized the eye movements during visual fixation, includ-ing microsaccades, in most cases only horizontal and vertical components have been rec-orded and analyzed. Thus, little is known about the torsional component of microsaccades. We took advantage of a newly developed software and hardware to record eye movements around the three axes of rotation during fixation and torsional optokinetic stimulus. We found that the average amplitude of the torsional component of microsaccades during fixation was 0.34 ± 0.07 degrees with velocities following a main sequence with a slope comparable to the horizontal and vertical components. We also found the size of the tor-sional displacement during microsaccades was correlated with the horizontal but not the vertical component. In the presence of an optokinetic stimulus a nystagmus was induced producing a more frequent and larger torsional quick phases compared to microsaccades produced during fixation with a stationary stimulus. The torsional component and the vertical vergence component of quick phases grew larger with higher velocities. Addition-ally, our results validate and show the feasibility of recording torsional eye movements using video eye tracking in a desktop mounted setup.

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光动力刺激下固定和快速阶段微眼跳的扭转成分。
虽然许多研究描述了眼球在注视过程中的运动,包括微跳,但在大多数情况下,只记录和分析了水平和垂直分量。因此,对微跳的扭转成分知之甚少。我们利用新开发的软件和硬件来记录眼球在固定和扭转光动力刺激期间围绕三个旋转轴的运动。我们发现,在固定期间,微眼跳扭转分量的平均振幅为0.34±0.07度,速度遵循主序列,斜率与水平和垂直分量相当。我们还发现,微跳时的扭转位移大小与水平分量相关,而与垂直分量无关。在光动力刺激下,眼球震颤比在固定刺激下产生的微跳更频繁和更大的扭转快速相。快速相的扭转分量和垂直辐合分量随速度的增加而增大。此外,我们的结果验证并显示了在桌面安装设置中使用视频眼动追踪记录扭转眼动的可行性。
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来源期刊
CiteScore
2.90
自引率
33.30%
发文量
10
审稿时长
10 weeks
期刊介绍: The Journal of Eye Movement Research is an open-access, peer-reviewed scientific periodical devoted to all aspects of oculomotor functioning including methodology of eye recording, neurophysiological and cognitive models, attention, reading, as well as applications in neurology, ergonomy, media research and other areas,
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