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实时 MRI 揭示了对眼球运动全动力学的独特洞察。

Real-Time MRI Reveals Unique Insight into the Full Kinematics of Eye Movements.

机构信息

Institute for Psychology, University of Münster, Münster 48149, Germany

Otto-Creutzfeldt Center for Cognitive and Behavioural Neuroscience, University of Münster, Münster 48149, Germany.

出版信息

eNeuro. 2022 Jan 7;9(1). doi: 10.1523/ENEURO.0357-21.2021. Print 2022 Jan-Feb.

Abstract

Our eyes are constantly in motion and the various kinds of eye movements are closely linked to many aspects of human cognitive processing. Measuring all possible eye movements unobtrusively is not achievable with current methods. Video-based eye-trackers only measure rotational but not translational motion of the eye, require a calibration process relying on the participant's self-report of accurate fixation, and do not work if vision of the eyeball is blocked. Scleral search coils attach physical weight on the eyeball and also do not measure translation. Here, we describe a novel and fully automated method to use real-time magnetic resonance imaging (MRI) for eye tracking. We achieved a temporal resolution sufficient to measure eye rotations and translations as short as those that occur within a blink and behind a closed eyelid. To demonstrate this method, we measured the full extent of the blink-related eye movement for two individuals, suggesting that the eye approaches a holding position during lid closure and can move by as much as 35° in rotation and 2 mm in translation. We also investigated the coordination of gaze shifts with blinks. We found that the gaze shift is tightly coupled in time to the translational blink movement and that blinks can induce significant temporal shifts of the gaze trajectory between left and right eye. Our MR-based Eye Tracking (MREyeTrack) method allows measurement of eye movements in terms of both translation and rotation and enables new opportunities for studying ocular motility and its disorders.

摘要

我们的眼睛不断运动,各种眼球运动与人类认知处理的许多方面密切相关。目前的方法无法实现对所有可能的眼球运动进行非侵入式测量。基于视频的眼动追踪器只能测量眼球的旋转运动,而不能测量平移运动,需要依赖参与者对准确注视的自我报告进行校准,而且如果眼球被遮挡则无法工作。巩膜搜索线圈会给眼球增加物理重量,而且也无法测量平移运动。在这里,我们描述了一种新颖的、完全自动化的方法,使用实时磁共振成像(MRI)进行眼动追踪。我们实现了足够的时间分辨率,可以测量眨眼和闭眼期间发生的极短眼球旋转和平移运动。为了演示这种方法,我们测量了两个人的眨眼相关眼球运动的全部范围,表明眼球在闭眼时会接近一个保持位置,并且可以在旋转方向上移动多达 35°,在平移方向上移动多达 2 毫米。我们还研究了注视转移与眨眼之间的协调。我们发现,在时间上,注视转移与平移眨眼运动紧密耦合,并且眨眼可以在左眼和右眼之间的注视轨迹上产生显著的时间位移。我们的基于 MRI 的眼动追踪(MREyeTrack)方法可以测量平移和旋转运动的眼球运动,并为研究眼球运动及其障碍提供新的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1248/8751851/01091dff8287/ENEURO.0357-21.2021_f001.jpg

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