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Altered distribution of inhibitory interneurons in polymicrogyria

机译:抑制性中枢神经元在多小胶质细胞中的分布改变

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There is a high incidence of epilepsy in patients with polymicrogyria; however, the epileptogenic mechanisms are largely unknown. The density of parvalbumin-immunoreactive interneurons was evaluated in an experimental model of polymicrogyria, in order to assess the potential changes in the development of one population of inhibitory interneurons. Newborn hamsters received an intracerebral injection of ibotenate, and all injected animals showed abnormal cortical layers characterized by one or two microgyrus in the fronto-parietal cortex. A quantitative analysis revealed that the ratios of parvalbumin-immunoreactive neurons in total neurons were significantly reduced in the medial paramicrogyral area, and in the medial and central parts of microgyrus in comparison to that in the lateral part of microgyrus (P<. 0.01). The lateral paramicrogyral area had the greatest number of parvalbumin-immunoreactive neurons, which was increased significantly in comparison to that in the control cortex (P<. 0.01). We suggest that the callosal, thalamic and intracortical afferents to the microgyrus and paramicrogyral area may induce a remarkable imbalance between the excitatory and inhibitory activities of the cortical structures, associated with the epileptogenic mechanism in polymicrogyria.
机译:多发性小脑症患者的癫痫发病率很高;然而,致癫痫的机制很大程度上未知。为了评估一个抑制性中间神经元群体发展中的潜在变化,在一个多微球蛋白的实验模型中评估了小白蛋白-免疫反应性中间神经元的密度。新生的仓鼠接受了脑内注射的ibotenate,并且所有注射的动物均表现出异常的皮质层,其特征是额顶皮质中有一个或两个微回旋。定量分析显示,与小回旋外侧相比,在副超回内侧区域,在小回旋的内侧和中央部分,小白蛋白免疫反应神经元的比例显着降低(P <0.01)。侧旁微回区的小白蛋白免疫反应性神经元数量最多,与对照皮层相比显着增加(P <0.01)。我们建议the,丘脑和皮质内传入微回旋区和micromicrogyral区域可能会诱发皮质结构的兴奋性和抑制活动之间的显着失衡,与polymicrogyria中的致痫机制相关。

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