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热敏性相互作用:在热感觉通道内汇聚之前,就已经存在通道间的痛觉调制。

Thermonociceptive interaction: interchannel pain modulation occurs before intrachannel convergence of warmth.

机构信息

Institute of Cognitive Neuroscience, University College London , London , United Kingdom.

Centre for Studies and Research in Cognitive Neuroscience, Alma Mater Studiorum - University of Bologna , Cesena , Italy.

出版信息

J Neurophysiol. 2019 May 1;121(5):1798-1808. doi: 10.1152/jn.00341.2018. Epub 2019 Mar 13.

Abstract

Nonnoxious warmth reduces both perceived pain intensity and the amplitude of EEG markers of pain. However, the spatial properties of thermonociceptive interaction, and the level of sensory processing at which it occurs, remain unclear. We investigated whether interchannel warmth-pain interactions occur before or after intrachannel spatial summation of warmth. Warm stimuli were applied to the fingers of the right hand. Their number and location were manipulated in different conditions. A concomitant noxious test pulse was delivered to the middle finger using a CO laser. We replicated the classical suppressive effect of warmth on both perceived pain intensity and EEG markers. Importantly, inhibition of pain was not affected by the location and the number of thermal stimuli, even though they increased the perceived intensity of warmth. Our results therefore suggest that the inhibitory effect of warmth on pain is not somatotopically organized. The results also rule out the possibility that warmth affects nociceptive processing after intrachannel warmth summation. We used spatial summation of warmth as a model to investigate thermonociceptive interactions. Painful CO laser pulses were delivered during different thermal conditions. We found that warmth inhibited pain regardless of its location. Crucially, spatial summation of multiple warm stimuli did not further inhibit pain. These findings suggest that warmth-pain interaction occurs independently of or after spatial summation of warmth.

摘要

非伤害性热刺激可降低感知疼痛的强度和 EEG 标记物的振幅。然而,热伤害感受相互作用的空间特性及其发生的感觉处理水平仍不清楚。我们研究了热-痛通道间相互作用是否发生在热通道内空间总和之前或之后。将温暖刺激施加到右手手指上。在不同条件下,改变它们的数量和位置。同时使用 CO 激光向中指施加有害测试脉冲。我们复制了温暖对感知疼痛强度和 EEG 标记物的经典抑制作用。重要的是,尽管热刺激增加了温暖的感知强度,但疼痛的抑制不受热刺激的位置和数量的影响。因此,我们的结果表明,温暖对疼痛的抑制作用不是躯体定位组织的。结果还排除了温暖在通道内温暖总和之后影响伤害性处理的可能性。我们使用温暖的空间总和作为模型来研究热伤害感受相互作用。在不同的热条件下,给予疼痛的 CO 激光脉冲。我们发现,无论其位置如何,温暖都能抑制疼痛。至关重要的是,多个温暖刺激的空间总和并没有进一步抑制疼痛。这些发现表明,温暖-疼痛相互作用独立于或发生在温暖的空间总和之后。

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