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记录脑内 EEG 显示岛叶对短暂性疼痛和非疼痛热及机械性脊髓丘脑刺激的反应。

Insular responses to transient painful and non-painful thermal and mechanical spinothalamic stimuli recorded using intracerebral EEG.

机构信息

Institute of Neuroscience, Université catholique de Louvain, Brussels, Belgium.

Department of Neurology, Saint-Luc University Hospital, Brussels, Belgium.

出版信息

Sci Rep. 2020 Dec 18;10(1):22319. doi: 10.1038/s41598-020-79371-2.

Abstract

Brief thermo-nociceptive stimuli elicit low-frequency phase-locked local field potentials (LFPs) and high-frequency gamma-band oscillations (GBOs) in the human insula. Although neither of these responses constitute a direct correlate of pain perception, previous findings suggest that insular GBOs may be strongly related to the activation of the spinothalamic system and/or to the processing of thermal information. To disentangle these different features of the stimulation, we compared the insular responses to brief painful thermonociceptive stimuli, non-painful cool stimuli, mechano-nociceptive stimuli, and innocuous vibrotactile stimuli, recorded using intracerebral electroencephalograpic activity in 7 epileptic patients (9 depth electrodes, 58 insular contacts). All four types of stimuli elicited consistent low-frequency phase-locked LFPs throughout the insula, possibly reflecting supramodal activity. The latencies of thermo-nociceptive and cool low-frequency phase-locked LFPs were shorter in the posterior insula compared to the anterior insula, suggesting a similar processing of thermal input initiating in the posterior insula, regardless of whether the input produces pain and regardless of thermal modality. In contrast, only thermo-nociceptive stimuli elicited an enhancement of insular GBOs, suggesting that these activities are not simply related to the activation of the spinothalamic system or to the conveyance of thermal information.

摘要

简短的热痛觉刺激会在人类脑岛中引发低频锁相局部场电位 (LFPs) 和高频伽马带振荡 (GBOs)。虽然这两种反应都不是疼痛感知的直接相关物,但之前的研究结果表明,脑岛 GBO 可能与脊髓丘脑系统的激活和/或热信息的处理密切相关。为了厘清刺激的这些不同特征,我们比较了脑岛对短暂性疼痛热痛觉刺激、非疼痛性冷刺激、机械痛觉刺激和无害振动触觉刺激的反应,这些刺激是使用 7 名癫痫患者的颅内脑电图活动记录的(9 个深部电极,58 个脑岛接触点)。所有四种类型的刺激都会在整个脑岛中引发一致的低频锁相 LFPs,这可能反映了超模式活动。与前部脑岛相比,后部脑岛的热痛觉和冷觉低频锁相 LFPs 的潜伏期较短,这表明热输入的处理在后部脑岛中是相似的,无论输入是否产生疼痛,也无论热觉模式如何。相比之下,只有热痛觉刺激会增强脑岛 GBO,这表明这些活动与脊髓丘脑系统的激活或热信息的传递无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bb2/7749115/6d5d4163329c/41598_2020_79371_Fig1_HTML.jpg

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