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Olfactory hypersensitivity in migraineurs: a H(2)(15)O-PET study.

机译:偏头痛的嗅觉超敏反应:一项H(2)(15)O-PET研究。

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Olfactory hypersensitivity (OHS) may occur during migraine attacks and seems to be very specific to this form of headache. OHS is also observed during migraine-free periods and is associated with the presence of odour-triggered attacks. Yet the pathophysiology of OHS remains unknown. The aim of our study was to evaluate olfactory processing in migraineurs with OHS and to investigate whether regional cerebral blood flow (rCBF) associated with olfactory stimulation is modified in these patients compared with controls. Eleven migraineurs with OHS and 12 controls participated in a H(2)(15)O-positron emission tomography study, including three scans in which odours were delivered and three scans where only odourless air was delivered. rCBF during olfactory condition was compared with that for the odourless baseline condition. Between-group analyses were performed using voxel-based and region-of-interest analyses. During both olfactory and non-olfactory conditions, we observed higher rCBF in the left piriformcortex and antero-superior temporal gyrus in migraineurs compared with controls. During odour stimulation, migraineurs also showed significantly higher activation than controls in the left temporal pole and significantly lower activation in the frontal (left inferior as well as left and right middle frontal gyri) and temporo-parietal (left and right angular, and right posterior superior temporal gyri) regions, posterior cingulate gyrus and right locus coeruleus. These results could reflect a particular role of both the piriform cortex and antero-superior temporal gyrus in OHS and odour-triggered migraine. Whether these rCBF changes are the cause or a consequence of odour-triggered migraines and interictal OHS remains unknown. Further comparisons between migraineurs with and without OHS are warranted to address this issue. The abnormal cerebral activation patterns during olfactory stimulation might reflect altered cerebrovascular response to olfactory stimulation due to the migraine disease, or an abnormal top-down regulation process related to OHS.
机译:偏头痛发作期间可能会发生嗅觉超敏反应(OHS),并且似乎对这种头痛形式非常特异。在无偏头痛期间也观察到OHS,并且OOH与气味触发攻击有关。 OHS的病理生理学仍然未知。我们研究的目的是评估OHS偏头痛患者的嗅觉加工过程,并调查与对照组相比,这些患者中与嗅觉刺激相关的局部脑血流量(rCBF)是否被改变。具有OHS的11个偏头痛者和12个对照参加了H(2)(15)O-正电子发射断层扫描研究,包括进行了三次扫描的过程,其中散发了气味,而进行了三次扫描,其中仅散发了无味的空气。将嗅觉状态下的rCBF与无味基线状态下的rCBF进行了比较。使用基于体素的和感兴趣区域分析进行组间分析。在嗅觉和非嗅觉条件下,与对照组相比,在偏头痛患者的左梨状皮层和前上颞回中,rCBF较高。在气味刺激期间,偏头痛患者的左颞极活动度也明显高于对照组,而额叶(左下中以及左右中额回回)和颞顶叶(左后角和右后角以及右后角)的激活明显降低颞上回)区域,扣带回后部和右轨迹蓝斑。这些结果可能反映了梨状皮层和前颞上回在OHS和异味触发的偏头痛中的特殊作用。这些rCBF的变化是气味触发的偏头痛和发作间的OHS的原因还是结果尚不清楚。有和没有OHS的移民之间的进一步比较,有必要解决。嗅觉刺激过程中异常的大脑激活模式可能反映了由于偏头痛疾病或与OHS相关的异常的自上而下的调节过程,导致脑血管对嗅觉刺激的反应发生了变化。

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