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STDP-based spiking deep convolutional neural networks for object recognition

Neural Networks · 2017 · Vol. 99 · pp. 56–67
Saeed Reza Kheradpisheh‎Mohammad GanjtabeshSimon J. ThorpeTimothée Masquelier
Advanced Memory and Neural ComputingNeural dynamics and brain functionCCD and CMOS Imaging SensorsComputer scienceArtificial intelligenceMNIST databasePattern recognition (psychology)Spiking neural networkNeural codingConvolutional neural networkPoolingDeep learningSpike-timing-dependent plasticity

MeSH terms

Action PotentialsAnimalsComputer SimulationHumansLearningModels, NeurologicalNeuronal PlasticityNeuronsPattern Recognition, VisualPhotic StimulationVisual PerceptionNeural Networks, Computer

Funding

  • Nvidia
Citations
760
FWCI
33.51
field-weighted impact
References
67
Percentile
100%
vs. same field & year
Citations per year
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References
A 128$\times$128 120 dB 15 $\mu$s Latency Asynchronous Temporal Contrast Vision Sensor
IEEE Journal of Solid-State Circuits · 2008 · 2,294 citations
Spiking Deep Convolutional Neural Networks for Energy-Efficient Object Recognition
International Journal of Computer Vision · 2014 · 906 citations
Complementary roles of basal ganglia and cerebellum in learning and motor control
Current Opinion in Neurobiology · 2000 · 973 citations
Spike-based strategies for rapid processing
Neural Networks · 2001 · 711 citations
Gradient-based learning applied to document recognition
Proceedings of the IEEE · 1998 · 57,014 citations
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