Brain Imaging Center, Smith-Kettlewell Eye Research Institute, San Francisco, CA, USA.
Division of Optometry and Visual Sciences, City, University of London, London, UK.
Behav Res Methods. 2019 Oct;51(5):2139-2151. doi: 10.3758/s13428-019-01280-8.
Eye movements are an important index of the neural functions of visual information processing, decision making, visuomotor coordination, sports performance, and so forth. However, the available optical tracking methods are impractical in many situations, such as the wearing of eyeglasses or the presence of ophthalmic disorders, and this can be overcome by accurate recording of eye movements by electrooculography (EOG). In this study we recorded eye movements by EOG simultaneously with high-density electroencephalogram (EEG) recording using a 128-channel EGI electrode net at a 500-Hz sampling rate, including appropriate facial electrodes. The participants made eye movements over a calibration target consisting of a 5×5 grid of stimulus targets. The results showed that the EOG methodology allowed accurate analysis of the amplitude and direction of the fixation locations and saccadic dynamics with a temporal resolution of 500 Hz, under both cued and uncued analysis regimes. Blink responses could be identified separately and were shown to have a more complex source derivation than has previously been recognized. The results also showed that the EOG signals recorded through the EEG net can achieve results as accurate as typical optical eye-tracking devices, and also allow for simultaneous assessment of neural activity during all types of eye movements. Moreover, the EOG method effectively avoids the technical difficulties related to eye-tracker positioning and the synchronization between EEG and eye movements. We showed that simultaneous EOG/EEG recording is a convenient means of measuring eye movements, with an accuracy comparable to that of many specialized eye-tracking systems.
眼球运动是视觉信息处理、决策、视动协调、运动表现等神经功能的一个重要指标。然而,现有的光学跟踪方法在许多情况下并不实用,例如戴眼镜或存在眼部疾病,而这可以通过眼电图(EOG)准确记录眼球运动来克服。在这项研究中,我们使用 128 通道 EGI 电极网以 500Hz 的采样率同时记录眼动和高密度脑电图(EEG),包括适当的面部电极。参与者在一个由刺激目标 5x5 网格组成的校准目标上进行眼球运动。结果表明,EOG 方法允许在 cue 和 uncue 分析模式下以 500Hz 的时间分辨率准确分析注视位置和扫视动力学的幅度和方向。眨眼反应可以单独识别,并显示出比以前认识到的更复杂的源推导。结果还表明,通过 EEG 网记录的 EOG 信号可以达到与典型的光学眼动跟踪设备一样准确的结果,并且还允许在所有类型的眼球运动期间同时评估神经活动。此外,EOG 方法有效地避免了与眼动跟踪器定位和 EEG 与眼球运动之间的同步相关的技术困难。我们表明,同时进行 EOG/EEG 记录是一种方便的测量眼球运动的方法,其准确性可与许多专门的眼动跟踪系统相媲美。