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Pre- and post-stimulus alpha activity shows differential modulation with spatial attention during the processing of pain

机译:刺激前和刺激后的阿尔法活性在疼痛的处理过程中表现出不同的调制方式,并具有空间注意力

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Extensive work using magneto- and electroencephalography (M/EEG) suggests that cortical alpha activity represents a top-down controlled gating mechanism employed by processes like attention across different modalities. However, it is not yet clear to what extent this presumed gating function of alpha activity also applies to the processing of pain.In the current study, a spatial attention paradigm was employed requiring subjects to attend to painful laser stimuli on one hand while ignoring stimuli on the other hand. Simultaneously, brain activity was recorded with MEG. In order to disentangle pre- and post-stimulus effects of attention, alpha activity was analyzed during time windows in anticipation of and in response to painful laser stimulation.Painful laser stimuli led to a suppression of alpha activity over both ipsi- and contralateral primary somatosensory areas irrespective if they were attended or ignored. Spatial attention was associated with a lateralization of anticipatory pre-stimulus alpha activity. Alpha activity was lower over primary somatosensory areas when the contralateral hand was attended compared to when the ipsilateral hand was attended, in line with the notion that oscillatory alpha activity regulates the flow of incoming information by engaging and/or disengaging early sensory areas. On the contrary, post-stimulus alpha activity, for stimuli on either hand, was consistently decreased with attention over contralateral areas. Most likely, this finding reflects an increased cortical activation and enhanced alerting if a painful stimulus is attended.The present results show that spatial attention results in a modulation of both pre- and post-stimulus alpha activity associated with pain. This flexible regulation of alpha activity matches findings from other modalities. We conclude that the assumed functional role of alpha activity as a top-down controlled gating mechanism includes pain processing and most likely represents a unified mechanism used throughout the brain.
机译:使用磁和脑电图(M / EEG)进行的大量研究表明,皮层的α活性代表了自上而下控制的门控机制,该过程采用了跨不同形态的注意力等过程。然而,尚不清楚这种假定的α活性门控功能在多大程度上也适用于疼痛的治疗。在当前研究中,采用了一种空间注意范式,要求受试者一方面要接受疼痛的激光刺激,而另一方面却忽略了刺激。另一方面。同时,用MEG记录脑活动。为了消除注意力在刺激前和刺激后的作用,在时间窗内分析了预期的和对疼痛的激光刺激的响应的α活性。有痛性的激光刺激抑制了同侧和对侧原代体感的α活性区域,无论他们是否出席或被忽略。空间注意力与预期的刺激前阿尔法活动的横向化有关。参加对侧手时与参加同侧手时相比,在主要体感区的Alpha活性较低,这符合振荡性alpha活动通过接合和/或脱离早期感觉区来调节传入信息流的观念。相反,刺激后的阿尔法活性(无论是哪种刺激)在对侧区域的关注下均持续下降。最有可能的是,该发现反映出如果受到疼痛刺激,皮质激活增强,警觉性增强。本研究结果表明,空间注意力导致与疼痛相关的刺激前和刺激后α活性的调节。这种对alpha活性的灵活调节与其他方式的发现相匹配。我们得出结论,阿尔法活性作为自上而下控制的门控机制的假定功能作用包括疼痛处理,最有可能代表整个大脑使用的统一机制。

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