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首页> 外文期刊>Pain. >Attentional modulation of the nociceptive processing into the human brain: selective spatial attention, probability of stimulus occurrence, and target detection effects on laser evoked potentials.
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Attentional modulation of the nociceptive processing into the human brain: selective spatial attention, probability of stimulus occurrence, and target detection effects on laser evoked potentials.

机译:伤害性加工到人脑的注意调制:选择性的空间注意,刺激发生的可能性以及对激光诱发电位的靶标检测作用。

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摘要

Laser evoked potentials (LEPs) are brain responses to activation of skin nociceptors by laser heat stimuli. LEPs consist of three components: N1, N2, and P2. Previous reports have suggested that in contrast to earlier activities (N1), LEPs responses after 230-250ms (N2-P2) are modulated by attention to painful laser stimuli. However, the experimental paradigms used were not designed to specify the attentional processes involved in these LEP modulations. We investigated the effects of selective spatial attention and oddball tasks on LEPs. CO(2) laser stimuli of two different intensities were delivered on the dorsum of both hands of ten subjects. One intensity was frequently presented, and the other rarely. Subjects were asked to pay attention to stimuli delivered on one hand and to count rare stimuli, while ignoring stimuli on the other hand. Frequent and rare attended stimuli evoked enhanced N160 (N1) and N230 (N2) components in comparison to LEPs from unattended stimuli. Both components showed scalp distribution contralateral to the stimulus location. The vertex P400 (P2) was unaffected by spatial attention and stimulus location, but its amplitude increased after rare stimuli, whether attended or unattended. An additional parietal P600 component was induced by the attended rare stimuli. It is suggested that several attentional processes can modify nociceptive processing in the brain at different stages. LEP activities in the time-range of N1 and N2 (120-270ms) showed evidence of processes modulated by the direction of spatial attention. Conversely, processes underlying P2 (400ms) were not affected by spatial attention, but by the probability of the stimulus. This probability effect was not due to P3b-related processes that were observed at a later latency (600ms). Indeed, P600 could be seen as a P3b evoked by conscious detection of rare targets.
机译:激光诱发电位(LEP)是大脑对通过激光热刺激激活皮肤伤害感受器的反应。 LEP由三个组件组成:N1,N2和P2。先前的报告表明,与早期活动(N1)相比,在230-250ms(N2-P2)之后,LEPs的反应受关注激光刺激的刺激而受到调节。但是,所使用的实验范式并非旨在指定涉及这些LEP调制的注意过程。我们调查了选择性空间注意力和奇异球任务对LEP的影响。两种不同强度的CO(2)激光刺激传递到十个对象的两只手的背部。一种强度经常出现,而另一种很少出现。要求受试者注意一方面传递的刺激并计数稀有刺激,而另一方面忽略刺激。与来自无人值守刺激的LEP相比,经常和罕见的参与刺激引起N160(N1)和N230(N2)成分增强。两种成分均显示出与刺激部位相反的头皮分布。顶点P400(P2)不受空间注意和刺激位置的影响,但是在受到稀有刺激(无论是有人照看还是无人照看)后,其振幅都会增加。伴随的稀有刺激物诱发了顶壁的P600成分。建议在不同阶段,几种注意过程可以改变大脑的伤害感受过程。在N1和N2的时间范围(120-270ms)中的LEP活动显示出受空间注意方向调制的过程的证据。相反,P2的过程(400毫秒)不受空间注意的影响,但受刺激的可能性影响。这种概率影响不是由于在较晚的延迟时间(600毫秒)中观察到的P3b相关过程。实际上,P600可以看作是有意识地检测稀有靶标而引起的P3b。

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