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首页> 外文期刊>Seizure: the journal of the British Epilepsy Association >Temporo-spatial analyses define epileptogenic and functional zones in a case of Dyke-Davidoff-Masson syndrome.
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Temporo-spatial analyses define epileptogenic and functional zones in a case of Dyke-Davidoff-Masson syndrome.

机译:时空分析在Dyke-Davidoff-Masson综合征的情况下定义了癫痫和功能区。

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摘要

Dyke-Davidoff-Masson syndrome (DDMS) is a rare epilepsy syndrome that is characterized by cerebral hemiatrophy, homolateral skull hyperplasia, hyperpneumatization of the paranasal sinuses, seizures with or without mental retardation, and contralateral hemiparesis. We describe a case of DDMS in a 40-year-old female who had complex partial seizures with occasional secondary generalization since the age of 4 years. Her seizure frequency was 10-20 seizures/month even though she took four antiepileptic drugs. We applied magnetic resonance imaging (MRI), positron emission tomography (PET), functional MRI, and invasive electroencephalography (EEG) to define her epileptogenic and functional zones. Brain MRI showed prominent atrophy in the left frontal dorsal and lateral regions and mild atrophy of the left superior temporal gyrus and left parietal gyri. Interictal PET revealed decreased glucose metabolism in the atrophic regions. Functional MRI demonstrated that the inferior frontal and inferior parieto-occipital regions of the right hemisphere were activated by language testing. Invasive EEG revealed that the left lateral temporal lobe was the sole source of her seizures. Our results imply that the "metabolic border zone" rather than the atrophic region plays an important role in seizure activity, and that reorganization of functional zones occur after cerebral damage early in life.
机译:Dyke-Davidoff-Masson综合征(DDMS)是一种罕见的癫痫综合征,其特征是脑血肿,同侧颅骨增生,鼻旁窦过度气化,有或没有智力障碍的癫痫发作以及对侧偏瘫。我们描述了一名40岁女性的DDMS病例,该女性自4岁起就患有复杂的部分性发作,偶有继发性泛发。即使服用了四种抗癫痫药,她的癫痫发作频率仍为每月10-20次癫痫发作。我们应用了磁共振成像(MRI),正电子发射断层扫描(PET),功能性MRI和有创脑电图(EEG)来定义其癫痫和功能区。脑MRI显示左额叶背侧和外侧区域明显萎缩,左颞上回和顶顶回轻度萎缩。间质PET显示萎缩区葡萄糖代谢下降。功能性MRI显示语言测试激活了右半球的额叶下部和顶枕下区域。脑电图显示,左侧颞叶是癫痫发作的唯一原因。我们的结果表明,“代谢性边缘区”而非萎缩区在癫痫发作活动中起重要作用,并且在生命早期发生脑损伤后会发生功能区的重组。

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