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沉默传入神经:一类独立的初级传入神经?

Silent afferents: a separate class of primary afferents?

作者信息

Michaelis M, Häbler H J, Jäenig W

机构信息

Physiologisches Institut, Christian-Albrechts-Universität, Kiel, Germany.

出版信息

Clin Exp Pharmacol Physiol. 1996 Feb;23(2):99-105. doi: 10.1111/j.1440-1681.1996.tb02579.x.

DOI:10.1111/j.1440-1681.1996.tb02579.x
PMID:8819636
Abstract
  1. In recent years, fine sensory nerve fibres have been detected that are not excited by physiological stimuli, even at potentially tissue damaging intensities. These silent afferents are known to supply knee joint, skin and viscera; in the last case, silent afferents seem to be particularly numerous. 2. When an artificial inflammation is induced, many silent afferents develop spike activity, others remain quiescent. Silent afferents that do respond probably have a nociceptive sensory function. Under inflammatory conditions some silent afferents are sensitized to physiological stimuli, others are probably chemospecific. 3. Orthodromic activity in silent afferents may sum spatially and temporally in second order neurons with other nociceptive information and may thereby contribute to different pain states. Furthermore, there is evidence that the activation of chemospecific silent afferents may lead to sensitization of nociceptive dorsal horn neurons. 4. Some silent afferents probably contain neuropeptides that may be liberated under pathophysiological conditions, such as inflammation. 5. Whether certain pathological states can be exclusively attributed to the activation of silent afferents or whether silent afferents sustain the functions of 'conventional' nociceptors remains to be clarified.
摘要
  1. 近年来,已检测到一些细感觉神经纤维,即使在可能对组织造成损伤的强度下,它们也不会被生理刺激所兴奋。这些静息传入纤维已知分布于膝关节、皮肤和内脏;在内脏中,静息传入纤维似乎特别多。2. 当诱发人工炎症时,许多静息传入纤维会产生峰电位活动,其他的则保持静止。有反应的静息传入纤维可能具有伤害性感觉功能。在炎症条件下,一些静息传入纤维对生理刺激敏感,其他的可能具有化学特异性。3. 静息传入纤维的顺向活动可能在二级神经元中与其他伤害性信息在空间和时间上进行总和,从而可能导致不同的疼痛状态。此外,有证据表明化学特异性静息传入纤维的激活可能导致伤害性背角神经元的敏化。4. 一些静息传入纤维可能含有神经肽,这些神经肽可能在病理生理条件下(如炎症)释放。5. 某些病理状态是否可完全归因于静息传入纤维的激活,或者静息传入纤维是否维持“传统”伤害感受器的功能,仍有待阐明。

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