Bioinspired Flexible, Dual‐Modulation Synaptic Transistors toward Artificial Visual Memory Systems
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Shuqi Wang | Mingming Hao | Yingyi Wang | Qifeng Lu | Fuqin Sun | Zihao Wang | Ting Zhang | Lianhui Li | Shuqi Wang | Qifeng Lu | Fuqin Sun | Tie Li | Zihao Wang | Ting Zhang | Yingyi Wang | Lin Liu | Lin Liu | Mingming Hao | Lianhui Li | Tie Li | Zhiguang Cao | Zhiguang Cao
[1] Byoung Hun Lee,et al. Neuromorphic Hardware System for Visual Pattern Recognition With Memristor Array and CMOS Neuron , 2015, IEEE Transactions on Industrial Electronics.
[2] Jianhai Zhang,et al. Simulation of retinal ganglion cell response using fast independent component analysis , 2018, Cognitive Neurodynamics.
[3] J. Lubbock. On the Sense of Color among some of the Lower Animals. , 2022 .
[4] John F. Donegan,et al. Associative Enhancement of Time Correlated Response to Heterogeneous Stimuli in a Neuromorphic Nanowire Device , 2016 .
[5] L. Chittka,et al. Limits to the salience of ultraviolet: lessons from colour vision in bees and birds. , 2001, The Journal of experimental biology.
[6] A. Borland,et al. Caffeine in Floral Nectar Enhances a Pollinator's Memory of Reward , 2013, Science.
[7] G. H. Jacobs. Ultraviolet vision in vertebrates , 1992 .
[8] Ning Liu,et al. Energy-Efficient Artificial Synapses Based on Flexible IGZO Electric-Double-Layer Transistors , 2015, IEEE Electron Device Letters.
[9] C. Koch,et al. Invariant visual representation by single neurons in the human brain , 2005, Nature.
[10] Wei Yang Lu,et al. Nanoscale memristor device as synapse in neuromorphic systems. , 2010, Nano letters.
[11] X Wang,et al. X-ray photoelectron spectroscopy and auger electron spectroscopy studies of Al-doped ZnO films , 2000 .
[12] Wei Lu,et al. Biorealistic Implementation of Synaptic Functions with Oxide Memristors through Internal Ionic Dynamics , 2015 .
[13] Andrew S. Cassidy,et al. A million spiking-neuron integrated circuit with a scalable communication network and interface , 2014, Science.
[14] Yang Hui Liu,et al. Freestanding Artificial Synapses Based on Laterally Proton‐Coupled Transistors on Chitosan Membranes , 2015, Advanced materials.
[15] T. B. Ghosh,et al. XPS and X-ray diffraction studies of aluminum-doped zinc oxide transparent conducting films , 1996 .
[16] C. Rao,et al. Factors Affecting Laser-Excited Photoluminescence from ZnO Nanostructures , 2012, Journal of Cluster Science.
[17] Shimeng Yu,et al. Synaptic electronics: materials, devices and applications , 2013, Nanotechnology.
[18] Farnood Merrikh-Bayat,et al. Training and operation of an integrated neuromorphic network based on metal-oxide memristors , 2014, Nature.
[19] Jan-Peter Richters,et al. Surface effects and nonlinear optical properties of ZnO nanowires , 2010 .
[20] Hyunsang Hwang,et al. Organic core-sheath nanowire artificial synapses with femtojoule energy consumption , 2016, Science Advances.
[21] Yi Shi,et al. Light Stimulated IGZO-Based Electric-Double-Layer Transistors For Photoelectric Neuromorphic Devices , 2018, IEEE Electron Device Letters.
[22] Allister F. McGuire,et al. A skin-inspired organic digital mechanoreceptor , 2015, Science.
[23] L. Chittka,et al. Caffeine Boosts Bees' Memories , 2013, Science.
[24] Xue-Bing Yin,et al. Synaptic Metaplasticity Realized in Oxide Memristive Devices , 2016, Advanced materials.
[25] Meng He,et al. Artificial Synapses Emulated by an Electrolyte‐Gated Tungsten‐Oxide Transistor , 2018, Advanced materials.
[26] Feng Yan,et al. Dynamically Reconfigurable Short‐Term Synapse with Millivolt Stimulus Resolution Based on Organic Electrochemical Transistors , 2019, Advanced Materials Technologies.
[27] Youngjune Park,et al. Artificial Synapses with Short- and Long-Term Memory for Spiking Neural Networks Based on Renewable Materials. , 2017, ACS nano.
[28] Peidong Yang,et al. Nanowire ultraviolet photodetectors and optical switches , 2002 .
[29] N. Troje,et al. Ultraviolet as a component of flower reflections, and the colour perception of hymenoptera , 1994, Vision Research.
[30] H. Markram. The Blue Brain Project , 2006, Nature Reviews Neuroscience.
[31] Di Chen,et al. An Artificial Flexible Visual Memory System Based on an UV‐Motivated Memristor , 2018, Advanced materials.
[32] Yang Hui Liu,et al. Flexible Metal Oxide/Graphene Oxide Hybrid Neuromorphic Transistors on Flexible Conducting Graphene Substrates , 2016, Advanced materials.
[33] Arindam Basu,et al. Synergistic Gating of Electro‐Iono‐Photoactive 2D Chalcogenide Neuristors: Coexistence of Hebbian and Homeostatic Synaptic Metaplasticity , 2018, Advanced materials.
[34] Edmund T Rolls,et al. Convergence of sensory systems in the orbitofrontal cortex in primates and brain design for emotion. , 2004, The anatomical record. Part A, Discoveries in molecular, cellular, and evolutionary biology.
[35] Wade G. Regehr,et al. Short-term synaptic plasticity: a comparison of two synapses , 2004, Nature Reviews Neuroscience.
[36] Detlev Boison,et al. Adenosine as a neuromodulator in neurological diseases. , 2008, Current opinion in pharmacology.
[37] Michael J. Bok,et al. Photoreception and vision in the ultraviolet , 2016, Journal of Experimental Biology.
[38] Qing Wan,et al. Artificial synapse network on inorganic proton conductor for neuromorphic systems. , 2014, Nature communications.
[39] J. Lubbock. Observations on Ants, Bees, and Wasps.—Part VIII. , 1876 .
[40] C. Soci,et al. ZnO nanowire UV photodetectors with high internal gain. , 2007, Nano letters.
[41] S. Moriceau,et al. Unique Neural Circuitry for Neonatal Olfactory Learning , 2004, The Journal of Neuroscience.