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人类的“初痛”:前脑的会聚和特异反应。

"First pain" in humans: convergent and specific forebrain responses.

机构信息

Dept. of Work-related Musculoskeletal Disorders, National Institute of Occupational Health, Oslo, Norway.

出版信息

Mol Pain. 2010 Nov 17;6:81. doi: 10.1186/1744-8069-6-81.

Abstract

BACKGROUND

Brief heat stimuli that excite nociceptors innervated by finely myelinated (Aδ) fibers evoke an initial, sharp, well-localized pain ("first pain") that is distinguishable from the delayed, less intense, more prolonged dull pain attributed to nociceptors innervated by unmyelinated (C) fibers ("second pain"). In the present study, we address the question of whether a brief, noxious heat stimulus that excites cutaneous Aδ fibers activates a distinct set of forebrain structures preferentially in addition to those with similar responses to converging input from C fibers. Heat stimuli at two temperatures were applied to the dorsum of the left hand of healthy volunteers in a functional brain imaging (fMRI) paradigm and responses analyzed in a set of volumes of interest (VOI).

RESULTS

Brief 41°C stimuli were painless and evoked only C fiber responses, but 51°C stimuli were at pain threshold and preferentially evoked Aδ fiber responses. Most VOI responded to both intensities of stimulation. However, within volumes of interest, a contrast analysis and comparison of BOLD response latencies showed that the bilateral anterior insulae, the contralateral hippocampus, and the ipsilateral posterior insula were preferentially activated by painful heat stimulation that excited Aδ fibers.

CONCLUSIONS

These findings show that two sets of forebrain structures mediate the initial sharp pain evoked by brief cutaneous heat stimulation: those responding preferentially to the brief stimulation of Aδ heat nociceptors and those with similar responses to converging inputs from the painless stimulation of C fibers. Our results suggest a unique and specific physiological basis, at the forebrain level, for the "first pain" sensation that has long been attributed to Aδ fiber stimulation and support the concept that both specific and convergent mechanisms act concurrently to mediate pain.

摘要

背景

短暂的热刺激会兴奋由细髓鞘(Aδ)纤维支配的伤害感受器,引起初始的、尖锐的、定位明确的疼痛(“第一痛”),与由无髓鞘(C)纤维支配的伤害感受器引起的延迟、强度较低、持续时间较长的钝痛(“第二痛”)不同。在本研究中,我们探讨了一个问题,即短暂的、有害的热刺激兴奋皮肤 Aδ 纤维是否会激活一组独特的大脑前区结构,这些结构除了对来自 C 纤维的传入信号具有相似的反应外,还会优先激活。在功能脑成像(fMRI)范式中,将两种温度的热刺激施加到健康志愿者左手的背部,并在一组感兴趣的体积(VOI)中分析反应。

结果

短暂的 41°C 刺激是无痛的,只引起 C 纤维的反应,但 51°C 的刺激是疼痛阈值,优先引起 Aδ 纤维的反应。大多数 VOI 对两种强度的刺激都有反应。然而,在感兴趣的体积内,对比分析和比较 BOLD 反应潜伏期表明,双侧前岛叶、对侧海马和同侧后岛叶被痛觉热刺激优先激活,而痛觉热刺激兴奋 Aδ 纤维。

结论

这些发现表明,两套大脑前区结构介导了短暂的皮肤热刺激引起的初始尖锐疼痛:那些对 Aδ 热伤害感受器的短暂刺激有优先反应的结构,以及对无痛刺激的 C 纤维传入信号有相似反应的结构。我们的研究结果表明,在大脑前区水平上,“第一痛”感觉有一个独特而特定的生理基础,长期以来一直归因于 Aδ 纤维的刺激,并支持这样一种概念,即特定和会聚的机制同时作用以介导疼痛。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/757d/3000383/27a746216316/1744-8069-6-81-1.jpg

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