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Migraine pathophysiology: anatomy of the trigeminovascular pathway and associated neurological symptoms CSD sensitization and modulation of pain

机译:偏头痛的病理生理学:三叉神经血管通路的解剖结构和相关的神经系统症状CSD疼痛的敏化和调节

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摘要

Scientific evidence support the notion that migraine pathophysiology involves inherited alteration of brain excitability, intracranial arterial dilatation, recurrent activation and sensitization of the trigeminovascular pathway, and consequential structural and functional changes in genetically susceptible individuals. Evidence of altered brain excitability emerged from clinical and preclinical investigation of sensory auras, ictal and interictal hypersensitivity to visual, auditory and olfactory stimulation, and reduced activation of descending inhibitory pain pathways. Data supporting the activation and sensitization of the trigeminovascular system include the progressive development of cephalic and whole-body cutaneous allodynia during a migraine attack. Also, structural and functional alterations include the presence of subcortical white mater lesions, thickening of cortical areas involved in processing sensory information, and cortical neuroplastic changes induced by cortical spreading depression. Here, we review recent anatomical data on the trigeminovascular pathway and its activation by cortical spreading depression, a novel understanding of the neural substrate of migraine-type photophobia, and modulation of the trigeminovascular pathway by the brainstem, hypothalamus and cortex.
机译:科学证据支持这样的观点,即偏头痛的病理生理学涉及遗传性脑兴奋性改变,颅内动脉扩张,三叉神经血管通路的反复激活和敏化以及遗传易感个体的相应结构和功能改变。脑兴奋性改变的证据来自感官先兆的临床和临床前研究,对视觉,听觉和嗅觉刺激的发作性和发作性超敏反应以及降低的抑制性疼痛途径的激活。支持三叉神经血管系统激活和敏化的数据包括偏头痛发作期间头皮和全身皮肤异常性疼痛的逐步发展。同样,结构和功能的改变包括皮质下白色物质病变的存在,参与处理感觉信息的皮质区域的增厚以及由皮质扩散抑制引起的皮质神经增生性改变。在这里,我们回顾了有关三叉神经血管通路及其通过皮层扩展性压抑的激活,对偏头痛型畏光症的神经底物的新认识以及脑干,下丘脑和皮质对三叉神经血管通路的调节的最新解剖数据。

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    Rodrigo Noseda; Rami Burstein;

  • 作者单位
  • 年(卷),期 -1(154 Suppl 1),-1
  • 年度 -1
  • 页码 021
  • 总页数 21
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