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Gamma-band oscillations in the primary somatosensory cortex--a direct and obligatory correlate of subjective pain intensity.

机译:初级体感皮层中的γ波段振荡-主观疼痛强度的直接和强制性关联。

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摘要

Electroencephalographic gamma band oscillations (GBOs) induced over the human primary somatosensory cortex (SI) by nociceptive stimuli have been hypothesized to reflect cortical processing involved directly in pain perception, because their magnitude correlates with pain intensity. However, as stimuli perceived as more painful are also more salient, an alternative interpretation of this correlation is that GBOs reflect unspecific stimulus-triggered attentional processing. In fact, this is suggested by recent observations that other features of the electroencephalographic (EEG) response correlate with pain perception when stimuli are presented in isolation, but not when their saliency is reduced by repetition. Here, by delivering trains of three nociceptive stimuli at a constant 1 s interval, and using different energies to elicit graded pain intensities, we demonstrate that GBOs recorded over SI always predict the subjective pain intensity, even when saliency is reduced by repetition. These results provide evidence for a close relationship between GBOs and the cortical activity subserving pain perception.
机译:有人认为,伤害性刺激会在人的初级体感皮层(SI)上诱发的脑电图伽马谱带振荡(GBO)反映出直接参与疼痛感知的皮质过程,因为它们的大小与疼痛强度相关。但是,由于被认为更痛苦的刺激也更加突出,因此这种相关性的另一种解释是,GBO反映了非特异性刺激触发的注意力加工。实际上,最近的观察表明这是脑电图(EEG)响应的其他特征与刺激分离显示时的疼痛感相关,但与重复显着降低其显着性无关。在这里,通过以恒定的1 s间隔传递三种伤害感受刺激的序列,并使用不同的能量来诱发分级疼痛强度,我们证明,即使重复性降低了显着性,在SI上记录的GBO仍然可以预测主观疼痛强度。这些结果提供了证据,表明GBO与维持疼痛知觉的皮层活动密切相关。

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