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EEG frequency-tagging to dissociate the cortical responses to nociceptive and non-nociceptive stimuli

机译:脑电频率标签以分离皮质对伤害性和非伤害性刺激的反应

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摘要

Whether the cortical processing of nociceptive input relies on the activity of nociceptive-specific neurons or whether it relies on the activity of neurons also involved in processing non-nociceptive sensory input remains a matter of debate. Here, we combined EEG “frequency-tagging” of steady-state evoked-potentials (SS-EPs) with an intermodal selective attention paradigm to test whether the cortical processing of nociceptive input relies on nociceptive-specific neuronal populations that can be selectively modulated by top-down attention. Trains of nociceptive and vibrotactile stimuli (experiment 1) and trains of nociceptive and visual stimuli (experiment 2) were applied concomitantly to the same hand, thus eliciting nociceptive, vibrotactile and visual SS-EPs. In each experiment, a target detection task was used to focus attention towards one of the two concurrent streams of sensory input. We found that selectively attending to nociceptive or vibrotactile somatosensory input indistinctly enhances the magnitude of nociceptive and vibrotactile SS-EPs, whereas selectively attending to nociceptive or visual input independently enhances the magnitude of the SS-EP elicited by the attended sensory input. This differential effect indicates that the processing of nociceptive input involves neuronal populations also involved in the processing of touch, but distinct from the neuronal populations involved in vision.
机译:伤害性输入的皮层处理是否依赖于伤害性特异性神经元的活性,还是依赖于还参与处理非伤害性感觉输入的神经元的活性,仍存在争议。在这里,我们结合稳态诱发电位(SS-EPs)的EEG“频率标记”与联运方式选择性注意范式,以测试伤害性输入的皮层处理是否依赖于伤害性特定的神经元种群,可以通过以下方式对其进行调节自上而下的注意。伤害感受和触觉刺激的训练(实验1)以及伤害感受和视觉刺激的训练(实验2)同时应用于同一只手,从而引起伤害感受,触觉和视觉SS-EP。在每个实验中,使用目标检测任务将注意力集中在两个同时出现的感觉输入流之一上。我们发现选择性参加伤害性或触觉性体感输入会明显增加伤害性和触觉性SS-EP的幅度,而选择性地参与伤害性或视觉触觉输入会独立增强由参与的感觉性输入引起的SS-EP的幅度。这种不同的效果表明,伤害性输入的处理涉及也涉及触摸处理的神经元群体,但不同于涉及视觉的神经元群体。

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