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首页> 外文期刊>Journal of Neurophysiology >Microneurography as a tool to study the function of individual C-fiber afferents in humans: responses from nociceptors, thermoreceptors, and mechanoreceptors
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Microneurography as a tool to study the function of individual C-fiber afferents in humans: responses from nociceptors, thermoreceptors, and mechanoreceptors

机译:微型术作为研究人类单个C-纤维引交功能的工具:来自伤害患者,热感受器和力学感应的反应

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摘要

The technique of microneurography-recording neural traffic from nerves in awake humans-has provided us with unrivaled insights into afferent and efferent processes in the peripheral nervous system for over 50 years. We review the use of microneurography to study single C-fiber afferents and provide an overview of the knowledge gained, with views to future investigations. C-fibers have slowly conducting, thin-diameter, unmyelinated axons and make up the majority of the fibers in peripheral nerves (similar to 80%). With the use of microneurography in humans, C-fiber afferents have been differentiated into discrete subclasses that encode specific qualities of stimuli on the skin, and their functional roles have been investigated. Afferent somatosensory information provided by C-fibers underpins various positive and negative affective sensations from the periphery, including mechanical, thermal, and chemical pain (C-nociceptors), temperature (C-thermoreceptors), and positive affective aspects of touch (C-tactile afferents). Insights from microneurographic investigations have revealed the complexity of the C-fiber system, methods for delineating fundamental C-fiber populations in a translational manner, how C-fiber firing can be used to identify nerve deficits in pathological states, and how the responses from C-fibers may be modified to change sensory percepts, including decreasing pain. Understanding these processes may lead to future medical interventions to diagnose and treat C-fiber dysfunction.
机译:从唤醒人类的神经中神经的微型术 - 记录神经交通技术 - 已经为我们提供了无与伦比的和传递过程中的无与伦比的洞察力,并且在50年以上。我们审查使用微型术以研究单一C-Fiber患者,并提供所获得的知识概述,观点是未来的调查。 C纤维具有缓慢导电,薄直径,未髓鞘的轴突,并在外周神经中构成大部分纤维(类似于80%)。通过在人体中使用微调术,C-纤维引入已经区分成了编码皮肤上刺激特异性的离散亚类,并且已经研究了其功能作用。 C-FIBERS提供的来自周边的各种积极和负面情感感官,包括机械,热和化学疼痛(C-NOCICEPTORS),温度(C-热感受器)和触觉正面情感方面(C-T触觉传入者)。微型调查的见解揭示了C-纤维系统的复杂性,用于以平移方式描绘基本C-纤维种群的方法,C-纤维射击如何用于识别病理状态的神经缺陷,以及如何回复 - 可以修饰纤维以改变感官感知,包括降低疼痛。了解这些过程可能导致未来的医疗干预措施诊断和治疗C-纤维功能障碍。

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