个人观点:模拟无先兆偏头痛的疼痛机制。

Jes Olesen
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引用次数: 2

摘要

引言:本综述旨在建立偏头痛痛觉模型。方法:个人经验与文献资料。结果:遗传和环境因素共同决定一个人是否患有偏头痛。内源性和/或外源性因素促使个体发作。伤害感觉发生在血管周围。从人体诱发研究中对偏头痛的分子病理生理机制有了越来越多的了解。啮齿类动物偏头痛模型对于理解许多假定涉及的分子和组织之间复杂的相互关系是必要的,但它们与人类偏头痛的相关性尚不确定。偏头痛痛觉的关键成分是一个由内皮细胞、血管平滑肌细胞、血管周围神经纤维(三叉神经、副交感神经和交感神经)和肥大细胞组成的单位。攻击可能从大脑外开始,通过体液或神经源性活动释放血管周围的伤害性物质。它们也可能(也许更经常)从大脑产生自主神经和躯体神经的传出活动开始。结论:人类和啮齿类动物的研究可以迅速揭开“偏头痛之谜”。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Personal view: Modelling pain mechanisms of migraine without aura.

Introduction: This review aims to model migraine nociception.

Methods: Personal experience and litterature.

Results: Genetic and environmental factors in combination decide whether a person suffers from migraine. Endogenous and/or exogenous factors precipitate the individual attacks. Nociception takes place around blood vessels. There is a growing understanding of the molecular pathophysiological mechanisms of migraine from human provocation studies. Rodent models of migraine are necessary to understand the complex interrelation between the many putatively involved molecules and tissues but their relevance for human migraine is uncertain. The crucial element in migraine nociception is a unit consisting of endothelial cells, vascular smooth muscle cells, perivascular nerve fibers (trigeminal, parasympathetic and sympathetic) and mast cells. Attacks may start outside the brain by humoral or neurogenic activity releasing nociceptive substances around blood vessels. They may also (perhaps more often) start by the brain generating efferent activity in autonomic and somatic nerves.

Conclusion: Human and rodent studies can quickly uncover the "mystery of migraine".

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