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首页> 外文期刊>Brain pathology >Neurodevelopmental disorders as a cause of seizures: neuropathologic, genetic, and mechanistic considerations.
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Neurodevelopmental disorders as a cause of seizures: neuropathologic, genetic, and mechanistic considerations.

机译:作为癫痫发作原因的神经发育障碍:神经病理学,遗传学和机制方面的考虑。

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This review will consider patterns of developmental neuropathologic abnormalities-malformations of cortical development (MCD)--encountered in infants (often with infantile spasms), children, and adults with intractable epilepsy. Treatment of epilepsy associated with some MCD, such as focal cortical dysplasia and tubers of tuberous sclerosis, may include cortical resection performed to remove the "dysplastic" region of cortex. In extreme situations (eg, hemimegalencephaly), hemispherectomy may be carried out on selected patients. Neuropathologic (including immunohistochemical) findings within these lesions will be considered. Other conditions that cause intractable epilepsy and often mental retardation, yet are not necessarily amenable to surgical treatment (eg, lissencephaly, periventricular nodular heterotopia, double cortex syndrome) will be discussed. Over the past 10 years there has been an explosion of information on the genetics of MCD. The genes responsible for many MCD (eg, TSC1, TSC2, LIS-1, DCX, FLN1) have been cloned and permit important mechanistic studies to be carried out with the purpose of understanding how mutations within these genes result in abnormal cortical cytoarchitecture and anomalous neuroglial differentiation. Finally, novel techniques allowing for analysis of patterns of gene expression within single cells, including neurons, is likely to provide answers to the most vexing and important question about these lesions: Why are they epileptogenic?
机译:这篇综述将考虑发育性神经病理学异常的模式-皮质发育(MCD)的畸形-在婴儿(通常患有婴儿痉挛),儿童和患有顽固性癫痫的成人中遇到。与某些MCD相关的癫痫病的治疗,例如局灶性皮质发育不良和结节性硬化块茎,可包括进行皮质切除以去除皮质的“发育不良”区域。在极端情况下(例如,半巨脑),可以对部分患者进行半球切除术。将考虑这些病变内的神经病理学(包括免疫组化)发现。将讨论引起顽固性癫痫和通常为智力低下,但不一定适合手术治疗的其他情况(例如,小脑症,脑室周围结节性异位症,双皮质综合征)。在过去的十年中,有关MCD遗传学的信息激增。已经克隆了负责许多MCD的基因(例如TSC1,TSC2,LIS-1,DCX,FLN1),并允许进行重要的机理研究,以了解这些基因中的突变如何导致异常的皮层细胞结构和异常。神经胶质细胞分化。最后,允许分析单个细胞(包括神经元)内基因表达模式的新技术可能会为有关这些病变的最棘手和最重要的问题提供答案:为什么它们会引起癫痫?

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