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解析热格栅错觉中虚假热和烧灼感的脊髓机制。

Disentangling the spinal mechanisms of illusory heat and burning sensations in the thermal grill illusion.

机构信息

Center of Functionally Integrative Neuroscience, Department of Clinical Medicine, Aarhus University, Aarhus, Denmark.

Department of Neuroscience, Copenhagen University, Copenhagen, Denmark.

出版信息

Pain. 2024 Oct 1;165(10):2370-2378. doi: 10.1097/j.pain.0000000000003352. Epub 2024 Aug 23.

Abstract

The thermal grill illusion (TGI), a phenomenon in which the juxtaposition of innocuous warm and cold temperatures on the skin elicits a burning sensation, offers a unique perspective to how pain occurs in response to harmless stimuli. We investigated the role of the spinal cord in the generation of the TGI across 2 experiments (total n = 80). We applied heat and cold stimuli to dermatomes, areas of skin innervated by a single spinal nerve, that mapped onto adjacent or nonadjacent spinal segments. Enhanced warm and burning ratings during the TGI were observed when cold and warm stimuli were confined within the same dermatome. Furthermore, we found the spatial organisation of warm and cold stimuli within and across dermatomes affected TGI perception. Perceived warmth and burning intensity increased when the cold stimulus projected to the segment more caudal to the warm stimulus, whereas perceived cold during the TGI decreased compared with the opposite spatial arrangement. This suggests that the perception of TGI is enhanced when cold afferents are projected to spinal segments positioned caudally in relation to those receiving warm afferents. Our results indicate distinct interaction of sensory pathways based on the segmental arrangement of afferent fibres and are consistent with current interpretations of the spread and integration of thermosensory information along the spinal cord.

摘要

热格栅错觉(TGI)是一种现象,即皮肤同时受到无害的温暖和寒冷温度的刺激会引起灼热感,这为我们提供了一个独特的视角来了解疼痛是如何对无害刺激产生的。我们通过两个实验(总共 80 人)研究了脊髓在 TGI 产生中的作用。我们将热和冷刺激应用于皮区,即由单个脊神经支配的皮肤区域,这些皮区映射到相邻或不相邻的脊段。当冷和热刺激局限于同一皮区时,TGI 期间会观察到增强的温暖和灼热感评分。此外,我们发现皮区内和跨皮区的冷热刺激的空间组织会影响 TGI 感知。当冷刺激投射到比温暖刺激更尾侧的节段时,感知到的温暖和灼热强度增加,而 TGI 期间感知到的寒冷则比相反的空间排列减少。这表明,当冷传入投射到相对于接收温暖传入的节段更尾侧的位置时,TGI 的感知会增强。我们的结果表明,基于传入纤维的节段排列,感觉途径存在明显的相互作用,这与当前对沿脊髓传播和整合热敏信息的解释一致。

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