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偏头痛先兆的临床神经生理学

Clinical neurophysiology of migraine with aura.

机构信息

Department of Medico-Surgical Sciences and Biotechnologies, Sapienza University of Rome Polo Pontino, Corso della Repubblica, 79-04100, Latina, Italy.

IRCCS - Don Gnocchi, Piazzale Morandi, 6-20121, Milan, Italy.

出版信息

J Headache Pain. 2019 Apr 29;20(1):42. doi: 10.1186/s10194-019-0997-9.

Abstract

BACKGROUND

The purpose of this review is to provide a comprehensive overview of the findings of clinical electrophysiology studies aimed to investigate changes in information processing of migraine with aura patients.

MAIN BODY

Abnormalities in alpha rhythm power and symmetry, the presence of slowing, and increased information flow in a wide range of frequency bands often characterize the spontaneous EEG activity of MA. Higher grand-average cortical response amplitudes, an increased interhemispheric response asymmetry, and lack of amplitude habituation were less consistently demonstrated in response to any kind of sensory stimulation in MA patients. Studies with single-pulse and repetitive transcranial magnetic stimulation (TMS) have reported abnormal cortical responsivity manifesting as greater motor evoked potential (MEP) amplitude, lower threshold for phosphenes production, and paradoxical effects in response to both depressing or enhancing repetitive TMS methodologies. Studies of the trigeminal system in MA are sparse and the few available showed lack of blink reflex habituation and abnormal findings on SFEMG reflecting subclinical, probably inherited, dysfunctions of neuromuscular transmission. The limited studies that were able to investigate patients during the aura revealed suppression of evoked potentials, desynchronization in extrastriate areas and in the temporal lobe, and large variations in direct current potentials with magnetoelectroencephalography. Contrary to what has been observed in the most common forms of migraine, patients with familial hemiplegic migraine show greater habituation in response to visual and trigeminal stimuli, as well as a higher motor threshold and a lower MEP amplitude than healthy subjects.

CONCLUSION

Since most of the electrophysiological abnormalities mentioned above were more frequently present and had a greater amplitude in migraine with aura than in migraine without aura, neurophysiological techniques have been shown to be of great help in the search for the pathophysiological basis of migraine aura.

摘要

背景

本综述的目的是全面概述旨在研究偏头痛先兆患者信息处理变化的临床电生理学研究结果。

主要内容

异常的α节律功率和对称性、存在减慢以及在广泛的频段中增加信息流,这些通常是偏头痛先兆患者自发脑电活动的特征。在偏头痛患者对任何类型的感觉刺激的反应中,更高的皮质平均响应幅度、增加的半球间响应不对称性以及缺乏幅度习惯化的情况不太一致。使用单脉冲和重复经颅磁刺激 (TMS) 的研究报告了皮质反应性异常,表现为更大的运动诱发电位 (MEP) 幅度、产生幻视的更低阈值以及对抑制或增强重复 TMS 方法的反常效应。偏头痛中三叉神经系统的研究很少,少数可用的研究显示眨眼反射习惯化缺乏和 SFEMG 的异常发现,反映了神经肌肉传递的亚临床、可能是遗传性的功能障碍。有限的能够在先兆期研究患者的研究表明,诱发电位受到抑制、外纹状体区和颞叶去同步化以及磁脑电图中的直流电位变化很大。与在最常见的偏头痛形式中观察到的情况相反,家族性偏瘫性偏头痛患者对视觉和三叉神经刺激的习惯化程度更高,运动阈值更高,MEP 幅度更低,与健康受试者相比。

结论

由于上述大多数电生理异常在偏头痛先兆中比在无先兆偏头痛中更频繁出现且幅度更大,因此神经生理学技术已被证明在寻找偏头痛先兆的病理生理基础方面非常有帮助。

相似文献

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Clinical neurophysiology of migraine with aura.偏头痛先兆的临床神经生理学
J Headache Pain. 2019 Apr 29;20(1):42. doi: 10.1186/s10194-019-0997-9.

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