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A carbon nanotube spiking cortical neuron with tunable refractory period and spiking duration

机译:具有可调的不应期和峰值持续时间的碳纳米管峰值皮质神经元

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This paper describes an analog tunable carbon nanotube axon hillock that exhibits spiking with control over spiking frequency and spiking duration. Experiments with the axon hillock circuit embedded in a neuron circuit demonstrate spiking patterns similar to a biological fast-spiking neuron. The circuit design is biomimetic and changes in control voltages lead to changes in key spike parameters such as spike refractory period and spiking duration. The effect of change in output spiking frequency is tested with synapses that temporally summate, and their effect on neural firing is observed. The experiments are demonstrated with SPICE simulations using carbon nanotube transistor simulation models.
机译:本文介绍了一种模拟可调谐碳纳米管轴突岗,它可以控制峰值频率和峰值持续时间,从而呈现峰值。嵌入神经元回路中的轴突岗区回路的实验证明了类似于生物快速突触神经元的突刺模式。电路设计是仿生的,控制电压的变化导致关键尖峰参数的变化,例如尖峰不应期和尖峰持续时间。输出突增频率的变化的影响是用暂时相加的突触进行测试的,并观察到它们对神经发动的影响。通过使用碳纳米管晶体管仿真模型的SPICE仿真,对实验进行了演示。

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