偏头痛的病理生理学。

N. Karsan
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引用次数: 0

摘要

本文通过对偏头痛症状谱的扩展、神经解剖学、偏头痛神经化学和治疗学的深入研究,概述了目前对偏头痛病理生理学的理解。最新进展人类偏头痛研究的最新进展,包括人类偏头痛实验模型和功能神经影像学,为偏头痛发作的起因、神经化学、神经解剖学和治疗基质提供了新的见解。人们已经清楚,偏头痛是一种神经性疾病,涉及广泛的脑区和神经化学系统,会产生不同的临床表型。其中许多神经通路是单胺能和肽能的,如降钙素基因相关肽和垂体腺苷酸环化酶激活多肽。偏头痛是一种脑部疾病,既涉及头痛,也涉及感觉、边缘和平衡处理的改变。神经递质系统、生理系统和疼痛处理之间可能存在复杂的相互作用。以这些网络中的各种治疗底物为靶点,为未来的偏头痛治疗提供了令人兴奋的途径。
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Pathophysiology of Migraine.
OBJECTIVE This article provides an overview of the current understanding of migraine pathophysiology through insights gained from the extended symptom spectrum of migraine, neuroanatomy, migraine neurochemistry, and therapeutics. LATEST DEVELOPMENTS Recent advances in human migraine research, including human experimental migraine models and functional neuroimaging, have provided novel insights into migraine attack initiation, neurochemistry, neuroanatomy, and therapeutic substrates. It has become clear that migraine is a neural disorder, in which a wide range of brain areas and neurochemical systems are implicated, producing a heterogeneous clinical phenotype. Many of these neural pathways are monoaminergic and peptidergic, such as those involving calcitonin gene-related peptide and pituitary adenylate cyclase-activating polypeptide. We are currently witnessing an exciting era in which specific drugs targeting these pathways have shown promise in treating migraine, including some studies suggesting efficacy before headache has even started. ESSENTIAL POINTS Migraine is a brain disorder involving both headache and altered sensory, limbic, and homeostatic processing. A complex interplay between neurotransmitter systems, physiologic systems, and pain processing likely occurs. Targeting various therapeutic substrates within these networks provides an exciting avenue for future migraine therapeutics.
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