神经形态工程学
MNIST数据库
感知器
人工神经网络
DNA运算
计算机科学
电解质
多层感知器
突触
DNA
刺激(心理学)
电压
材料科学
生物系统
配对
人工智能
算法
神经科学
化学
物理
生物
工程类
电气工程
电极
心理学
生物化学
超导电性
物理化学
量子力学
计算
心理治疗师
作者
Dong‐Ho Kang,Jeong Hun Kim,Seyong Oh,Hyung‐Youl Park,Sreekantha Reddy Dugasani,Beom‐Seok Kang,Changhwan Choi,Rino Choi,Sungjoo Lee,Sung Ha Park,Keun Heo,Jin‐Hong Park
标识
DOI:10.1002/advs.201901265
摘要
Abstract A bioinspired neuromorphic device operating as synapse and neuron simultaneously, which is fabricated on an electrolyte based on Cu 2+ ‐doped salmon deoxyribonucleic acid (S‐DNA) is reported. Owing to the slow Cu 2+ diffusion through the base pairing sites in the S‐DNA electrolyte, the synaptic operation of the S‐DNA device features special long‐term plasticity with negative and positive nonlinearity values for potentiation and depression (α p and α d ), respectively, which consequently improves the learning/recognition efficiency of S‐DNA‐based neural networks. Furthermore, the representative neuronal operation, “integrate‐and‐fire,” is successfully emulated in this device by adjusting the duration time of the input voltage stimulus. In particular, by applying a Cu 2+ doping technique to the S‐DNA neuromorphic device, the characteristics for synaptic weight updating are enhanced (|α p |: 31→20, |α d |: 11→18, weight update margin: 33→287 nS) and also the threshold conditions for neuronal firing (amplitude and number of stimulus pulses) are modulated. The improved synaptic characteristics consequently increase the Modified National Institute of Standards and Technology (MNIST) pattern recognition rate from 38% to 44% (single‐layer perceptron model) and from 89.42% to 91.61% (multilayer perceptron model). This neuromorphic device technology based on S‐DNA is expected to contribute to the successful implementation of a future neuromorphic system that simultaneously satisfies high integration density and remarkable recognition accuracy.
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