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Normal and epilepsy-associated pathologic function of the dentate gyrus

机译:牙齿的正常和癫痫相关病理功能

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The dentate gyrus plays critical roles both in cognitive processing, and in regulation of the induction and propagation of pathological activity. The cellular and circuit mechanisms underlying these diverse functions overlap extensively. At the cellular level, the intrinsic properties of dentate granule cells combine to endow these neurons with a fundamental reluctance to activate, one of their hallmark traits. At the circuit level, the dentate gyrus constitutes one of the more heavily inhibited regions of the brain, with strong, fast feedforward and feedback GABAergic inhibition dominating responses to afferent activation. In pathologic states such as epilepsy, a number of alterations within the dentate gyrus combine to compromise the regulatory properties of this circuit, culminating in a collapse of its normal function. This epilepsy-associated transformation in the fundamental properties of this critical regulatory hippocampal circuit may contribute both to seizure propensity, and cognitive and emotional comorbidities characteristic of this disease state.
机译:牙齿过滤在认知处理中起着关键作用,并在调节病理活性的诱导和繁殖中。这些不同功能的蜂窝和电路机制是广泛的重叠。在细胞水平下,牙齿颗粒细胞的内在特性结合以赋予这些神经元,以激活其一个标志性特征的基本不情愿。在电路水平下,牙齿的回形物构成脑内抑制的一个抑制区域中的一种,具有强大,快速的前馈和反馈Gabaeric抑制占归因于传入活化的反应。在诸如癫痫的病理状态中,牙齿回形内的许多改变结合以损害该电路的调节性质,最终在其正常功能的塌陷中。这种关键调节海马电路的基本性质的这种癫痫相关转化可能有助于这种疾病状态的癫痫发作和认知和情绪合并性。

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