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首页> 外文期刊>Biomedical Circuits and Systems, IEEE Transactions on >Analog VLSI Biophysical Neurons and Synapses With Programmable Membrane Channel Kinetics
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Analog VLSI Biophysical Neurons and Synapses With Programmable Membrane Channel Kinetics

机译:具有可编程膜通道动力学的模拟VLSI生物物理神经元和突触

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We present and characterize an analog VLSI network of 4 spiking neurons and 12 conductance-based synapses, implementing a silicon model of biophysical membrane dynamics and detailed channel kinetics in 384 digitally programmable parameters. Each neuron in the analog VLSI chip (NeuroDyn) implements generalized Hodgkin-Huxley neural dynamics in 3 channel variables, each with 16 parameters defining channel conductance, reversal potential, and voltage-dependence profile of the channel kinetics. Likewise, 12 synaptic channel variables implement a rate-based first-order kinetic model of neurotransmitter and receptor dynamics, accounting for NMDA and non-NMDA type chemical synapses. The biophysical origin of all 384 parameters in 24 channel variables supports direct interpretation of the results of adapting/tuning the parameters in terms of neurobiology. We present experimental results from the chip characterizing single neuron dynamics, single synapse dynamics, and multi-neuron network dynamics showing phase-locking behavior as a function of synaptic coupling strength. Uniform temporal scaling of the dynamics of membrane and gating variables is demonstrated by tuning a single current parameter, yielding variable speed output exceeding real time. The 0.5 $mu{rm m}$ CMOS chip measures 3 mm $times$ 3 mm, and consumes 1.29 mW.
机译:我们提出并表征了由4个尖峰神经元和12个基于电导的突触组成的模拟VLSI网络,在384个数字可编程参数中实现了生物物理膜动力学和详细通道动力学的硅模型。模拟VLSI芯片(NeuroDyn)中的每个神经元都在3个通道变量中实现了广义的霍奇金-赫克斯利神经动力学,每个变量具有16个参数,定义了通道电导,反向电势和通道动力学的电压依赖性曲线。同样,12个突触通道变量实现神经递质和受体动力学的基于速率的一阶动力学模型,这说明了NMDA和非NMDA型化学突触。 24个通道变量中所有384个参数的生物物理起源都支持直接解释根据神经生物学对参数进行调整/调整的结果。我们目前从芯片表征单个神经元动力学,单个突触动力学和多神经元网络动力学表征的实验结果表明锁相行为作为突触耦合强度的函数。膜和选通变量动力学的均匀时间缩放通过调整单个电流参数得到证明,产生的变速输出超过实时。 0.5微米CMOS芯片的尺寸为3毫米x 3毫米,功耗为1.29毫瓦。

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