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Memristive Imitation of Synaptic Transmission and Plasticity

机译:忆阻模仿突触传递和可塑性

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In this paper, a memristive artificial neural circuit imitating the excitatory chemical synaptic transmission of biological synapse is designed. The proposed memristor-based neural circuit exhibits synaptic plasticity, one of the important neurochemical foundations for learning and memory, which is demonstrated via the efficient imitation of short-term facilitation and long-term potentiation. Moreover, the memristive artificial circuit also mimics the distinct biological attributes of strong stimulation and deficient synthesis of neurotransmitters. The proposed artificial neural model is designed in SPICE, and the biological functionalities are demonstrated via various simulations. The simulation results obtained with the proposed artificial synapse are similar to the biological features of chemical synaptic transmission and synaptic plasticity.
机译:本文设计了一种模仿生物突触的兴奋性化学突触传递的忆阻人工神经回路。拟议的基于忆阻器的神经回路表现出突触可塑性,这是学习和记忆的重要神经化学基础之一,这通过有效地模仿短期促进和长期增强而得到证明。此外,忆阻性人造电路还模仿了强刺激和神经递质合成不足的独特生物学特性。在SPICE中设计了拟议的人工神经模型,并通过各种仿真演示了生物学功能。拟议的人工突触获得的模拟结果类似于化学突触传递和突触可塑性的生物学特征。

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