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脊髓背角浅层中疼痛传递和调制的突触连接。

The synaptic connectivity that underlies the noxious transmission and modulation within the superficial dorsal horn of the spinal cord.

机构信息

Department of Anatomy, Histology and Embryology and K. K. Leung Brain Research Centre, The Fourth Military Medical University, Xi'an 710032, PR China.

出版信息

Prog Neurobiol. 2010 May;91(1):38-54. doi: 10.1016/j.pneurobio.2010.01.005. Epub 2010 Jan 25.

Abstract

Noxious stimuli can usually cause the aversive sensations, pain and itch. The initial integration of such noxious information occurs in the superficial dorsal horn of the spinal cord (SDH), which is very important for understanding pain sensation and developing effective analgesic strategies. The circuits formed by pools of neurons and terminals within SDH are accepted as the platform for such complicated integrations and are highly plastic under conditions of inflammatory or neuropathic pain. Recent literature offers a complicated, yet versatile view of SDH intrinsic circuits with both inhibitory and excitatory components. However, our knowledge about the adaptative regulation of SDH local circuits is still far from sufficient due to the incomplete understanding of their organization as they are intermingled with primary afferent fibers (PAFs), poorly understood or identified SDH neurons, somehow contradictory data for descending control systems. A more positive view emphasizes abundant modern data on SDH neuron morphology and physiology riding on the back of significant technological advancements used in neuroscience. Reviewing the current literature on this topic thus produced an integrated understanding of SDH neurons and the SDH local circuits involved in noxious transmission and modulation.

摘要

有害刺激通常会引起不愉快的感觉、疼痛和瘙痒。这种有害信息的初步整合发生在脊髓背角浅层(SDH),这对于理解疼痛感觉和制定有效的镇痛策略非常重要。SDH 内神经元池和末梢形成的回路被认为是这种复杂整合的平台,在炎症或神经性疼痛的情况下具有高度的可塑性。最近的文献提供了一个复杂但多功能的观点,认为 SDH 内在回路既有抑制性成分,也有兴奋性成分。然而,由于对其组织的不完全了解,我们对 SDH 局部回路的适应性调节的了解还远远不够,因为它们与初级传入纤维(PAFs)、尚未被很好理解或鉴定的 SDH 神经元、下行控制系统的数据存在一定的矛盾。一个更积极的观点强调了在神经科学中使用的重要技术进步的基础上,SDH 神经元形态和生理学方面的大量现代数据。因此,回顾这一主题的现有文献,对参与有害信息传递和调节的 SDH 神经元和 SDH 局部回路有了一个综合的认识。

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