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Translational nociceptor research as guide to human pain perceptions and pathophysiology.

机译:转化伤害感受器研究可指导人们对疼痛的理解和病理生理学。

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摘要

Microneurography is a method for recording single unit action potentials with microelectrodes from the nerves of awake cooperating humans. Although this method is now in use since almost 40 years, its potency has been strengthened by the recent technical developments. A great progress was the discovery that different functional groups of nociceptors are characterized by a distinctly different post-excitatory slowing of their conduction velocities. Microneurography is now powerful enough to analyze the nerve activity pattern of enigmatic sensations such as pruritus. Furthermore, it is the only method providing direct insight in the changes which human nerves undergo with aging. Recently, reliable recordings from patients suffering from painful neuropathies came into reach. It has been shown that different types of neuropathies are characterized by different patterns of abnormal nociceptor functions. Although some of them are characterized by abnormal spontaneous activity in C-nociceptors, others show mainly signs of denervation. Microneurography is, therefore, a tool for translational studies on human nociceptor functions by linking direct animal studies on experimental neuropathies with human diseases.
机译:微神经图谱学是一种用来自清醒合作人的神经的微电极记录单个单位动作电位的方法。尽管这种方法已经使用了近40年,但由于最近的技术发展,其功效得到了增强。一个巨大的进步是发现伤害感受器的不同功能组的特征在于其传导速度的兴奋后减慢明显不同。微神经图谱现在已经足够强大,可以分析诸如瘙痒之类的神秘感觉的神经活动模式。此外,它是唯一可以直接洞察人类神经衰老变化的方法。最近,来自痛苦神经病患者的可靠记录得以实现。已经表明,不同类型的神经病的特征在于异常伤害感受器功能的不同模式。尽管它们中的一些特征在于C型伤害感受器的自发异常活动,但另一些则主要表现出去神经支配的迹象。因此,通过将对实验性神经病的直接动物研究与人类疾病联系起来,微神经照相术是对人类伤害感受器功能进行转化研究的工具。

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