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探讨偏头痛中感觉通路的改变。

Exploring alterations in sensory pathways in migraine.

机构信息

School of Medical Sciences (Neuroscience), Brain and Mind Centre, University of Sydney, Camperdown, NSW, 2050, Australia.

出版信息

J Headache Pain. 2022 Jan 12;23(1):5. doi: 10.1186/s10194-021-01371-y.

Abstract

BACKGROUND

Migraine is a neurological disorder characterized by intense, debilitating headaches, often coupled with nausea, vomiting and sensitivity to light and sound. Whilst changes in sensory processes during a migraine attack have been well-described, there is growing evidence that even between migraine attacks, sensory abilities are disrupted in migraine. Brain imaging studies have investigated altered coupling between areas of the descending pain modulatory pathway but coupling between somatosensory processing regions between migraine attacks has not been properly studied. The aim of this study was to determine if ongoing functional connectivity between visual, auditory, olfactory, gustatory and somatosensory cortices are altered during the interictal phase of migraine.

METHODS

To explore the neural mechanisms underpinning interictal changes in sensory processing, we used functional magnetic resonance imaging to compare resting brain activity patterns and connectivity in migraineurs between migraine attacks (n = 32) and in healthy controls (n = 71). Significant differences between groups were determined using two-sample random effects procedures (p < 0.05, corrected for multiple comparisons, minimum cluster size 10 contiguous voxels, age and gender included as nuisance variables).

RESULTS

In the migraine group, increases in infra-slow oscillatory activity were detected in the right primary visual cortex (V1), secondary visual cortex (V2) and third visual complex (V3), and left V3. In addition, resting connectivity analysis revealed that migraineurs displayed significantly enhanced connectivity between V1 and V2 with other sensory cortices including the auditory, gustatory, motor and somatosensory cortices.

CONCLUSIONS

These data provide evidence for a dysfunctional sensory network in pain-free migraine patients which may be underlying altered sensory processing between migraine attacks.

摘要

背景

偏头痛是一种神经系统疾病,其特征是剧烈的、使人虚弱的头痛,常伴有恶心、呕吐和对光和声的敏感。虽然偏头痛发作期间的感觉过程变化已经得到了很好的描述,但越来越多的证据表明,即使在偏头痛发作之间,偏头痛患者的感觉能力也会受到干扰。脑成像研究已经调查了下行疼痛调节途径中区域之间的耦合变化,但偏头痛发作之间的躯体感觉处理区域之间的耦合尚未得到适当研究。本研究的目的是确定在偏头痛的间歇期,视觉、听觉、嗅觉、味觉和躯体感觉皮层之间的持续功能连接是否发生改变。

方法

为了探索感觉处理中间歇期变化的神经机制,我们使用功能磁共振成像比较了偏头痛发作间期偏头痛患者(n=32)和健康对照组(n=71)的静息脑活动模式和连接。使用双样本随机效应程序确定组间的显著差异(p<0.05,经多重比较校正,最小簇大小为 10 个连续体素,年龄和性别作为混杂变量包含在内)。

结果

在偏头痛组中,在右侧初级视觉皮层(V1)、次级视觉皮层(V2)和第三视觉复合体(V3)以及左侧 V3 中检测到亚慢振荡活动增加。此外,静息连接分析显示,偏头痛患者显示出 V1 和 V2 与其他感觉皮层(包括听觉、味觉、运动和躯体感觉皮层)之间的连接明显增强。

结论

这些数据为无疼痛偏头痛患者的感觉网络功能障碍提供了证据,这可能是偏头痛发作之间感觉处理改变的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c87/8903612/6616a02844c0/10194_2021_1371_Fig1_HTML.jpg

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