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A conductance-based neuronal network in VLSI for studying the CPR circuit of the crayfish

机译:VLSI中基于电导的神经元网络,用于研究小龙虾的CPR电路

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This paper presents a conductance-based neuronal network in VLSI suitable for studying the caudal photoreceptor (CPR) neuron circuits in the crayfish. By the nullcline approach, the neuron circuit with type-I excitability is designed. The synapse circuit further shares the same schematics with the circuit of ion currents to reduce the design complexity. A full chip containing one CPR neuron, one hair neuron, one inter-neuron, and six synapses is designed with the standard 0.18µm CMOS technology. An analog memory array is also included to store the parameters of the system. By interconnecting two chips to form a complete CPR network of the crayfish, the ability to regenerate a variety of spiking patterns observed in the biological CPR network is examined and discussed.
机译:本文提出了一种适用于VLSI的基于电导的神经元网络,适用于研究小龙虾的尾部感光神经(CPR)神经元回路。通过零位折线方法,设计了具有I型兴奋性的神经元回路。突触电路还与离子电流电路共享相同的原理图,以降低设计复杂度。采用标准的0.18µm CMOS技术设计了一个包含一个CPR神经元,一个毛发神经元,一个神经元间神经元和六个突触的全芯片。还包括一个模拟存储器阵列来存储系统参数。通过互连两个芯片以形成小龙虾的完整CPR网络,我们将研究和讨论在生物CPR网络中观察到的各种尖峰模式的再生能力。

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