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触抑制触:山椒素诱导的矛盾刺痛揭示了感觉模态之间的感知相互作用。

Touch inhibits touch: sanshool-induced paradoxical tingling reveals perceptual interaction between somatosensory submodalities.

机构信息

Institute of Cognitive Neuroscience, University College London, Alexandra House 17 Queen Square, London WC1N 3AZ, UK.

Institute of Philosophy, School of Advanced Study - University of London, Senate House, Malet Street, London WC1E 7HU, UK.

出版信息

Proc Biol Sci. 2021 Jan 27;288(1943):20202914. doi: 10.1098/rspb.2020.2914.

Abstract

Human perception of touch is mediated by inputs from multiple channels. Classical theories postulate independent contributions of each channel to each tactile feature, with little or no interaction between channels. In contrast to this view, we show that inputs from two sub-modalities of mechanical input channels interact to determine tactile perception. The flutter-range vibration channel was activated anomalously using , a bioactive compound of Szechuan pepper, which chemically induces vibration-like tingling sensations. We tested whether this tingling sensation on the lips was modulated by sustained mechanical pressure. Across four experiments, we show that sustained touch inhibits sanshool tingling sensations in a location-specific, pressure-level and time-dependent manner. Additional experiments ruled out the mediation of this interaction by nociceptive or affective (C-tactile) channels. These results reveal novel inhibitory influence from steady pressure onto flutter-range tactile perceptual channels, consistent with early-stage interactions between mechanoreceptor inputs within the somatosensory pathway.

摘要

人类对触觉的感知是由多个通道的输入介导的。经典理论假设每个通道对每个触觉特征都有独立的贡献,通道之间几乎没有或没有相互作用。与这种观点相反,我们表明来自机械输入通道的两个亚模态的输入相互作用以确定触觉感知。使用花椒素,一种四川花椒的生物活性化合物,异常激活了振动范围的振动通道,这种化合物在化学上引起类似振动的刺痛感。我们测试了嘴唇上的这种刺痛感是否会被持续的机械压力调节。通过四个实验,我们表明持续的触摸会以位置特异性、压力水平和时间依赖性的方式抑制山椒的刺痛感。额外的实验排除了这种相互作用是由伤害感受或情感(C 触觉)通道介导的。这些结果揭示了来自稳定压力的对振动范围触觉感知通道的新的抑制影响,与感觉通路内机械感受器输入的早期相互作用一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a20a/7893281/ffa5d045c433/rspb20202914-g1.jpg

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