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皮层在重复激光刺激过程中的激活变化:一项脑磁图研究。

Cortical activation changes during repeated laser stimulation: a magnetoencephalographic study.

机构信息

Department of Experimental Psychology, Institute of Psychology, Health, and Society, University of Liverpool, Liverpool, United Kingdom.

出版信息

PLoS One. 2011 May 10;6(5):e19744. doi: 10.1371/journal.pone.0019744.

Abstract

Repeated warm laser stimuli produce a progressive increase of the sensation of warmth and heat and eventually that of a burning pain. The pain resulting from repetitive warm stimuli is mediated by summated C fibre responses. To shed more light on the cortical changes associated with pain during repeated subnoxious warm stimulation, we analysed magnetoencephalographic (MEG) evoked fields in eleven subjects during application of repetitive warm laser stimuli to the dorsum of the right hand. One set of stimuli encompassed 10 laser pulses occurring at 2.5 s intervals. Parameters of laser stimulation were optimised to elicit a pleasant warm sensation upon a single stimulus with a rise of skin temperature after repeated stimulation not exceeding the threshold of C mechano-heat fibres. Subjects reported a progressive increase of the intensity of heat and burning pain during repeated laser stimulation in spite of only mild (4.8°C) increase of skin temperature from the first stimulus to the tenth stimulus. The mean reaction time, evaluated in six subjects, was 1.33 s, confirming involvement of C fibres. The neuromagnetic fields were modelled by five equivalent source dipoles located in the occipital cortex, cerebellum, posterior cingulate cortex, and left and right operculo-insular cortex. The only component showing statistically significant changes during repetitive laser stimulation was the late component of the contralateral operculo-insular source peaking at 1.05 s after stimulus onset. The amplitude increases of the late component of the contralateral operculo-insular source dipole correlated with the subjects' numerical ratings of warmth and pain. Results point to a pivotal role of the contralateral operculo-insular region in processing of C-fibre mediated pain during repeated subnoxious laser stimulation.

摘要

反复的温热刺激会产生温热感和热感的逐渐增加,最终产生灼痛感。重复温热刺激引起的疼痛是由累积的 C 纤维反应介导的。为了更深入地了解重复亚阈温热刺激过程中与疼痛相关的皮层变化,我们在 11 名受试者的右背部应用重复温热激光刺激时,分析了脑磁图(MEG)诱发场。一组刺激包括以 2.5 s 间隔发生的 10 个激光脉冲。激光刺激的参数经过优化,以在单个刺激时产生舒适的温热感,并且在重复刺激后皮肤温度的升高不会超过 C 机械热纤维的阈值。尽管从第一个刺激到第十个刺激皮肤温度仅升高 4.8°C,但受试者报告说在重复激光刺激过程中,热感和灼痛感逐渐增强。在 6 名受试者中评估的平均反应时间为 1.33 秒,证实了 C 纤维的参与。通过位于枕叶皮层、小脑、后扣带皮层以及左右岛盖-脑岛皮层的五个等效源偶极子对神经磁场进行建模。在重复激光刺激过程中仅显示出统计学上显著变化的是对侧岛盖-脑岛源的晚成分,该成分在刺激后 1.05 秒达到峰值。对侧岛盖-脑岛源偶极子的晚成分的振幅增加与受试者对温暖和疼痛的数值评分相关。结果表明,在重复亚阈激光刺激过程中,对侧岛盖-脑岛区域在处理 C 纤维介导的疼痛中起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1a5/3091873/9ce593b4442a/pone.0019744.g001.jpg

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