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瑞芬太尼对听觉刺激处理的影响:一项结合 MEG/EEG 的研究。

Effects of remifentanil on processing of auditory stimuli: a combined MEG/EEG study.

机构信息

1Faculty of Psychology and Neuroscience, Maastricht University, The Netherlands.

出版信息

J Psychopharmacol. 2014 Jan;28(1):39-48. doi: 10.1177/0269881113512036. Epub 2013 Nov 20.

Abstract

Remifentanil (Ultiva(®)) is a potent ultra-short acting mu-opioid receptor agonist used for perioperative pain treatment and anaesthesia. So far, it is not known how sensitive the cognitive processing of auditory perception elicited by the mismatch negativity (MMN) paradigm is to opioids. The present exploratory study investigated how the opioid remifentanil modulates different stages of auditory processing as reflected in the MMN(m) and P3a(m). We recorded electroencephalography (EEG) and magnetoencephalography (MEG) during auditory stimulation under remifentanil or placebo infusion in 20 healthy participants. For the MMN, a gender effect was found for tones deviating in frequency (± 10%) from the standard tone. Remifentanil increased the amplitude of the frequency MMN at F3 in females but not in males. No effect of treatment was found for the MMN(m) or the novel P3a(m). These results suggest that while the bottom-up stimulus change detection system for auditory stimuli appears to be relatively insensitive to opioids, the automatic attention switch caused by the change detection seems to be modulated by the opioid system in females. The multiple deviant paradigm including novel sounds is a promising tool for investigating pharmacological manipulation of different stages of auditory processing. Furthermore, combining the two techniques will yield more specific information about the drug effects on MMN(m).

摘要

瑞芬太尼(Ultiva(®))是一种强效的超短效μ阿片受体激动剂,用于围手术期疼痛治疗和麻醉。到目前为止,还不知道听觉感知的失匹配负波(MMN)范式引起的认知加工对阿片类药物有多敏感。本探索性研究调查了阿片类药物瑞芬太尼如何调节 MMN(m)和 P3a(m)反映的不同听觉加工阶段。我们在 20 名健康参与者输注瑞芬太尼或安慰剂期间记录了听觉刺激的脑电图(EEG)和脑磁图(MEG)。对于偏离标准音调 10%(±10%)的音调,MMN 存在性别效应。瑞芬太尼增加了女性 F3 频率 MMN 的振幅,但对男性没有影响。MMN(m)或新的 P3a(m) 没有治疗效果。这些结果表明,虽然听觉刺激的自下而上的刺激变化检测系统似乎对阿片类药物相对不敏感,但由变化检测引起的自动注意转换似乎被女性的阿片系统调节。包括新声音的多偏差范式是研究听觉加工不同阶段药物干预的有前途的工具。此外,将这两种技术结合起来将提供关于 MMN(m) 药物作用的更具体信息。

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