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Computational investigation of effects of UP state on EPSP in striatal Medium Spiny Neurons

机译:UP状态对纹状体中棘神经元EPSP影响的计算研究

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Reward circuit is considered as the major site at which many drugs of abuse act. The nucleus accumbens (NAcc) plays an important role in the reward circuit and it constitutes the major subdivision of the ventral striatum. Medium Spiny Neuron (MSN), is the principal neuron of Nucleus accumbens (Nacc) and is known to possess bimodal behavior. Due to the bi modal behavior of the cell, there are significant discrepancies in the shape of the EPSP generated in the cell. A change in the active conductances of the cells causes a significant change in the nature of the EPSP generated. The effect of Sodium and Potassium channels is explored to understand their effect on MSN excitability.
机译:奖励回路被认为是许多滥用毒品的主要场所。伏伏核(NAcc)在奖励回路中起重要作用,并且构成腹侧纹状体的主要细分。中棘神经元(MSN)是伏伏核(Nacc)的主要神经元,已知具有双峰行为。由于细胞的双峰行为,在细胞中产生的EPSP的形状存在显着差异。细胞活性电导率的变化引起所产生的EPSP的性质发生重大变化。探索了钠和钾通道的作用,以了解其对MSN兴奋性的影响。

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