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空间返回抑制促进与反应相关的μ波和β波振荡模式的变化。

Spatial Inhibition of Return promotes changes in response-related mu and beta oscillatory patterns.

作者信息

Amenedo E, Gutiérrez-Domínguez F-J, Darriba Á, Pazo-Álvarez P

机构信息

Department of Clinical Psychology and Psychobiology, Faculty of Psychology, University of Santiago de Compostela, Spain.

Department of Clinical Psychology and Psychobiology, Faculty of Psychology, University of Santiago de Compostela, Spain.

出版信息

Neuroscience. 2015 Dec 3;310:616-28. doi: 10.1016/j.neuroscience.2015.09.072. Epub 2015 Oct 9.

Abstract

The possible role that response processes play in Inhibition of Return (IOR), traditionally associated with reduced or inhibited attentional processing of spatially cued target stimuli presented at cue-target intervals longer than 300 ms, is still under debate. Previous psychophysiological studies on response-related Electroencephalographic (EEG) activity and IOR have found divergent results. Considering that the ability to optimize our behavior not only resides in our capacity to inhibit the focus of attention from irrelevant information but also to inhibit or reduce motor activation associated with responses to that information, it is conceivable that response processes are also affected by IOR. In the present study, time-frequency (T-F) analyses were performed on EEG oscillatory activity between 2 and 40 Hz to check whether spatial IOR affects response preparation and execution during a visuospatial attention task. To avoid possible spatial stimulus-response compatibility effects and their interaction with the IOR effects, the stimuli were presented along the vertical meridian of the visual field. The results differed between lower and upper visual fields. In the lower visual field spatial IOR was related to a synchronization in the pre-movement mu band at bilateral precentral and central electrodes, and in the post-movement beta band at contralateral precentral and central electrodes, which may be associated with an attention-driven reduction of somatomotor processing prior to the execution of responses to relevant stimuli presented at previously cued locations followed by a post-movement deactivation of motor areas. In the upper visual field, spatial IOR was associated with a decrease in desynchronization around response execution in the beta band at contralateral postcentral electrodes that might indicate a late (last moment) reduction of motor activation when responding to spatially cued targets. The present results suggest that different response processes are affected by spatial IOR depending on the visual field where the target is presented.

摘要

反应过程在返回抑制(IOR)中可能发挥的作用仍在争论之中。传统上,IOR与对空间线索化目标刺激的注意力加工减少或受抑制有关,这些目标刺激在线索-目标间隔超过300毫秒时呈现。以往关于与反应相关的脑电图(EEG)活动和IOR的心理生理学研究得出了不同的结果。考虑到优化我们行为的能力不仅在于抑制注意力从无关信息上转移,还在于抑制或减少与对该信息的反应相关的运动激活,因此可以想象反应过程也会受到IOR的影响。在本研究中,对2至40赫兹之间的EEG振荡活动进行了时频(T-F)分析,以检查空间IOR在视觉空间注意任务中是否会影响反应准备和执行。为了避免可能的空间刺激-反应相容性效应及其与IOR效应的相互作用,刺激沿着视野的垂直子午线呈现。结果在下部视野和上部视野之间有所不同。在下部视野中,空间IOR与双侧中央前回和中央电极处运动前μ波段的同步以及对侧中央前回和中央电极处运动后β波段的同步有关,这可能与在对先前线索化位置呈现的相关刺激做出反应之前,注意力驱动的躯体运动加工减少有关,随后运动区域在运动后失活。在上部视野中,空间IOR与对侧中央后回电极处β波段在反应执行周围去同步化的减少有关,这可能表明在对空间线索化目标做出反应时运动激活在后期(最后时刻)减少。目前的结果表明,根据目标呈现的视野不同,不同的反应过程会受到空间IOR的影响。

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