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暴露于双侧眼球运动后大脑连通性的变化。

Changes in brain connectivity following exposure to bilateral eye movements.

作者信息

Fleck Jessica I, Olsen Robert, Tumminia Michael, DePalma Francesco, Berroa John, Vrabel Abigail, Miller Shannon

机构信息

Stockton University, 101 Vera King Farris Drive, Galloway, NJ 08205, USA.

Stockton University, 101 Vera King Farris Drive, Galloway, NJ 08205, USA.

出版信息

Brain Cogn. 2018 Jun;123:142-153. doi: 10.1016/j.bandc.2018.03.009. Epub 2018 Mar 21.

Abstract

The present research assessed how engaging in bilateral eye movements influences brain activity. Participants had their resting-state brain activity recorded with electroencephalography (EEG) before and after they performed 30 s of bilateral eye movements or a center-control manipulation. We assessed differences in change scores for absolute power and coherence between the eye-movement and center-control conditions. A main effect for handedness was present for EEG power in the theta and beta frequency bands, with inconsistent-handed participants displaying a greater increase than consistent-handed participants in both frequency bands. For theta, the increase in power for inconsistent handers was specific to participants in the bilateral eye-movement condition, whose increase in theta power exceeded the increase in theta power for consistent-handed participants regardless of condition. In contrast, for coherence, a main effect for condition was present for the delta frequency band, with participants in the control condition exhibiting a significant drop in posterior delta coherence pre to post. We suggest that the maintenance of posterior delta coherence over time may be an important factor in sustaining attention. Further, the malleability of EEG power for inconsistent-handed participants reveals the importance of individual-differences variables in the potential for behavioral manipulations to change brain activity.

摘要

本研究评估了进行双侧眼球运动如何影响大脑活动。参与者在进行30秒的双侧眼球运动或中心控制操作之前和之后,通过脑电图(EEG)记录其静息状态下的大脑活动。我们评估了眼球运动和中心控制条件下绝对功率和相干性变化分数的差异。对于θ和β频段的脑电图功率,存在利手的主效应,双手不一致的参与者在两个频段上显示出比双手一致的参与者更大的增加。对于θ频段,双手不一致者功率的增加特定于双侧眼球运动条件下的参与者,无论何种条件,其θ功率的增加都超过了双手一致参与者的θ功率增加。相比之下,对于相干性,在δ频段存在条件的主效应,控制条件下的参与者在前后的后δ相干性显著下降。我们认为,随着时间的推移维持后δ相干性可能是维持注意力的一个重要因素。此外,双手不一致参与者脑电图功率的可塑性揭示了个体差异变量在行为操作改变大脑活动潜力方面的重要性。

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