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人类躯体感觉皮层 BA3a 内的一个伤害感受特异性区域:BA3c?

A nociresponsive specific area of human somatosensory cortex within BA3a: BA3c?

机构信息

Sir Peter Mansfield Imaging Centre, School of Physics and Astronomy, University of Nottingham, Nottingham NG7 2RD, UK.

Sir Peter Mansfield Imaging Centre, School of Physics and Astronomy, University of Nottingham, Nottingham NG7 2RD, UK; Future Food Beacon, School of Biosciences, University of Nottingham, Nottingham, UK.

出版信息

Neuroimage. 2020 Nov 1;221:117187. doi: 10.1016/j.neuroimage.2020.117187. Epub 2020 Jul 22.

Abstract

It is well recognized that in primates, including humans, noxious body stimulation evokes a neural response in the posterior bank of the central sulcus, in Brodmann cytoarchitectonic subdivisions 3b and 1 of the primary somatosensory cortex. This response is associated with the 1st/sharp pain and contributes to sensory discriminative aspects of pain perception and spatial localization of the noxious stimulus. However, neurophysiological studies in New World monkeys predict that in humans noxious stimulation also evokes a separate neural response-mediated by C-afferent drive and associated with the 2nd/burning pain-in the depth of the central sulcus in Brodmann area 3a (BA3a) at the transition between the somatosensory and motor cortices. To evoke such a response, it is necessary to use multi-second duration noxious stimulation, rather than brief laser pulses. Given the limited human pain-imaging literature on cortical responses induced by C-nociceptive input specifically within BA3a, here we used high spatial resolution 7T fMRI to study the response to thermonoxious skin stimulation. We observed the predicted response of BA3a in the depth of the central sulcus in five human volunteers. Review of the available evidence suggests that the nociresponsive region in the depth of the central sulcus is a structurally and functionally distinct cortical area that should not be confused with proprioceptive BA3a. It is most likely engaged in interoception and control of the autonomic nervous system, and contributes to the sympathetic response to noxious stimulation, arguably the most intolerable aspect of pain experience. Ablation of this region has been shown to reduce pain sensibility and might offer an effective means of ameliorating some pathological pain conditions.

摘要

众所周知,在灵长类动物中,包括人类,有害的身体刺激会在中央沟的后缘引起神经反应,位于初级体感皮层的布罗德曼 3b 和 1 区。这种反应与第一/锐痛有关,并有助于疼痛感知的感觉辨别方面和有害刺激的空间定位。然而,新世界猴的神经生理学研究预测,在人类中,有害刺激也会引起另一种神经反应——由 C 传入驱动介导,并与体感和运动皮层交界处中央沟的布罗德曼 3a 区(BA3a)中的第二/灼热痛有关。为了引起这种反应,需要使用持续数秒的有害刺激,而不是短暂的激光脉冲。鉴于关于 C 伤害性传入在 BA3a 内引起的皮质反应的有限人类疼痛成像文献,我们在这里使用高空间分辨率 7T fMRI 研究了对热痛皮肤刺激的反应。我们在五名人类志愿者中观察到了中央沟深部 BA3a 的预测反应。对现有证据的回顾表明,中央沟深部的伤害反应区是一个结构和功能上不同的皮质区域,不应与体感 BA3a 混淆。它很可能参与内脏感觉和自主神经系统的控制,并有助于对有害刺激的交感反应,这可能是疼痛体验中最难以忍受的方面。该区域的消融已被证明可以降低疼痛敏感性,并可能提供一种有效的方法来改善某些病理性疼痛状况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eaa3/7762820/e184f4c1b5dc/gr1.jpg

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