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A modified synapse model for neuromorphic circuits

机译:改进的神经形态电路突触模型

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Nowadays, biological neural system modeling is extending to higher levels which have made it feasible to accomplish a better understanding of the brain behavior. In this regard, neurons, have been center of attention in terms of analysis and modeling. Synapses, on the other hand, are one of the most critical components in the central nervous system, which provide basis for the communication between neurons and are known as a main contributor to the system neuroplasticity. In this paper, we present a modified model for synaptic transmission (NMDA receptor) which is suitable for efficient simulations and also circuit implementations. To test integrity and validation of the simplified model, simulations results are presented. This model can be used for digital and/or analog implementations in large-scale biological neural system simulations. This approach provides advantage of higher speed and lower implementation costs yet demonstrating similar dynamic behaviors.
机译:如今,生物神经系统建模正在扩展到更高的水平,这使人们可以更好地了解大脑行为。在这方面,神经元在分析和建模方面一直是关注的焦点。另一方面,突触是中枢神经系统中最关键的组成部分之一,它为神经元之间的交流提供基础,并被称为系统神经可塑性的主要贡献者。在本文中,我们提出了一种修饰的突触传递模型(NMDA受体),适用于有效的仿真以及电路实现。为了测试简化模型的完整性和验证性,给出了仿真结果。该模型可用于大规模生物神经系统仿真中的数字和/或模拟实现。这种方法具有更高的速度和更低的实现成本,却展示了类似的动态行为。

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