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发作间期偏头痛患者中反映丘脑-皮质活动的体感诱发性高频振荡减少。

Somatosensory evoked high-frequency oscillations reflecting thalamo-cortical activity are decreased in migraine patients between attacks.

作者信息

Coppola Gianluca, Vandenheede Michel, Di Clemente Laura, Ambrosini Anna, Fumal Arnaud, De Pasqua Victor, Schoenen Jean

机构信息

Headache Research Unit, University Department of Neurology, University of Liège, CHR Citadelle, Liège, Belgium.

出版信息

Brain. 2005 Jan;128(Pt 1):98-103. doi: 10.1093/brain/awh334. Epub 2004 Nov 24.

Abstract

A deficit of habituation in cortical information processing, including somatosensory evoked potentials (SSEPs), is the most consistent neurophysiological abnormality in migraine patients between attacks. To explore further the mechanisms underlying this interictal neural dysfunction, we have studied the high-frequency oscillations (HFOs) embedded in SSEPs because they are thought to reflect spike activity in thalamo-cortical cholinergic fibres (early HFOs) and in cortical inhibitory GABAergic interneurons (late HFOs). Untreated migraine patients with (MA) and without (MO) aura were recorded during (n = 13: nine MO, four MA) and between attacks (n = 29: 14 MO, 15 MA) and compared with healthy volunteers. SSEPs were filtered off-line (digital band-pass between 450 and 750 Hz) to extract the two HFO bursts from the broad-band contralateral N20 somatosensory cortical response obtained by median nerve stimulation. In both migraine groups, amplitudes and latencies of conventional broad-band SSEPs recorded interictally from cervical and parietal active electrodes were not significantly different from those found in healthy volunteers. In contrast, maximum peak-to-peak amplitude and area under the rectified curve of the early HFO burst were significantly smaller in both MA and MO patients than in healthy volunteers. There was no significant difference in the later HFO burst between migraineurs and healthy volunteers. During attacks, all electrophysiological measurements in migraineurs were similar to those found in healthy volunteers. Thalamo-cortical activation, as reflected by the early SSEP HFO burst, may thus be reduced in migraine interictally, but normalizes during an attack, whereas intracortical inhibition, as indexed by the late HFO burst, is normal at any time. This supports the hypothesis that the habituation deficit in migraineurs is due to a reduced pre-activation level of sensory cortices and not to increased cortical excitability or reduced intracortical inhibition.

摘要

在偏头痛患者发作间期,包括体感诱发电位(SSEPs)在内的皮质信息处理习惯化缺陷是最一致的神经生理异常。为了进一步探究这种发作间期神经功能障碍的潜在机制,我们研究了SSEPs中嵌入的高频振荡(HFOs),因为它们被认为反映了丘脑 - 皮质胆碱能纤维(早期HFOs)和皮质抑制性GABA能中间神经元(晚期HFOs)的棘波活动。在发作期间(n = 13:9名无先兆偏头痛患者[MO],4名有先兆偏头痛患者[MA])和发作间期(n = 29:14名MO,15名MA)记录未治疗的偏头痛患者,并与健康志愿者进行比较。通过离线滤波(450至750 Hz的数字带通)SSEPs,从正中神经刺激获得的对侧N20体感皮质宽带反应中提取两个HFO爆发。在两个偏头痛组中,发作间期从颈部和顶叶有源电极记录的传统宽带SSEPs的振幅和潜伏期与健康志愿者相比无显著差异。相比之下,MA和MO患者早期HFO爆发的最大峰峰值振幅和整流曲线下面积均显著小于健康志愿者。偏头痛患者和健康志愿者之间晚期HFO爆发无显著差异。在发作期间,偏头痛患者的所有电生理测量结果与健康志愿者相似。因此,早期SSEP HFO爆发所反映的丘脑 - 皮质激活在偏头痛发作间期可能降低,但在发作期间恢复正常,而晚期HFO爆发所指示的皮质内抑制在任何时候都是正常的。这支持了以下假设:偏头痛患者的习惯化缺陷是由于感觉皮质的预激活水平降低,而不是由于皮质兴奋性增加或皮质内抑制减少。

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