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一名患有复杂部分性癫痫的患者出现神经元异位伴神经元毛细血管侵入及皮质发育异常。病例报告。

Neuronal heterotopia with capillary penetration of neurons and cortical dysplasia in a patient with complex partial seizures. Case report.

作者信息

Jay V, Becker L E, Otsubo H, Hwang P, Hoffman H J, Armstrong D C

机构信息

Department of Pathology, Hospital for Sick Children, University of Toronto, Ontario, Canada.

出版信息

J Neurosurg. 1993 Apr;78(4):654-7. doi: 10.3171/jns.1993.78.4.0654.

Abstract

Unusual pathological findings were encountered in a temporal lobectomy specimen from a 9-year-old boy with intractable complex partial seizures. Magnetic resonance imaging revealed an enlarged left temporal lobe, with diffuse high signal intensity over the cortex and poor gray-white differentiation on T2-weighted imaging; single-photon emission computerized tomography showed decreased blood flow. Active epileptiform discharges were identified in the left temporal lobe with focal slow waves and generalized epileptiform paroxysms. Pathologically, the cortex revealed changes of focal cortical dysplasia with extensive disorganization of neuronal morphology, layering, and orientation as well as focal polymicrogyria. The cortical-white matter junction was indistinct with extensive neuronal heterotopias in the white matter. Large pale balloon cells akin to those seen in tuberous sclerosis were found scattered within the cortex and white matter. The most striking finding was that of a heterotopic nodule in the white matter, which revealed abnormal neurons with penetration of cell bodies by capillaries. Ultrastructurally, there were no degenerative changes in these neurons, and this unusual phenomenon is attributed to a developmental disturbance affecting neuronal, glial, and vascular elements.

摘要

在一名患有难治性复杂部分性癫痫的9岁男孩的颞叶切除标本中发现了异常的病理表现。磁共振成像显示左侧颞叶增大,在T2加权成像上皮质弥漫性高信号强度,灰白质分化不良;单光子发射计算机断层扫描显示血流减少。在左侧颞叶发现了伴有局灶性慢波和全身性癫痫样发作的活动性癫痫样放电。病理上,皮质显示局灶性皮质发育异常的改变,神经元形态、分层和方向广泛紊乱,以及局灶性多小脑回。皮质-白质交界处不清晰,白质中有广泛的神经元异位。在皮质和白质中散在发现了类似于结节性硬化症中所见的大的苍白气球样细胞。最显著的发现是白质中的一个异位结节,其中显示异常神经元,其细胞体被毛细血管穿透。超微结构上,这些神经元没有退行性改变,这种不寻常的现象归因于影响神经元、胶质细胞和血管成分的发育障碍。

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