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Neuromorphic Silicon Neuron Circuits

Frontiers in Neuroscience · 2011 · Vol. 5 · pp. 73–73
Giacomo IndiveriB. Linares-BarrancoTara Julia HamiltonAndré van SchaikRalph Etienne‐CummingsTobi DelbrückShih‐Chii LiuPiotr DudekPhilipp HäfligerSylvie RenaudJohannes SchemmelGert CauwenberghsJohn V. ArthurK.M. HynnaFopefolu FolowoseleSylvain SaïghiTeresa Serrano‐GotarredonaJayawan WijekoonYingxue WangKwabena Boahen

Abstract

Hardware implementations of spiking neurons can be extremely useful for a large variety of applications, ranging from high-speed modeling of large-scale neural systems to real-time behaving systems, to bidirectional brain-machine interfaces. The specific circuit solutions used to implement silicon neurons depend on the application requirements. In this paper we describe the most common building blocks and techniques used to implement these circuits, and present an overview of a wide range of neuromorphic silicon neurons, which implement different computational models, ranging from biophysically realistic and conductance-based Hodgkin-Huxley models to bi-dimensional generalized adaptive integrate and fire models. We compare the different design methodologies used for each silicon neuron design described, and demonstrate their features with experimental results, measured from a wide range of fabricated VLSI chips.

Advanced Memory and Neural ComputingNeural dynamics and brain functionFerroelectric and Negative Capacitance DevicesNeuromorphic engineeringComputer scienceRangingVery-large-scale integrationElectronic circuitImplementationRange (aeronautics)Computer architectureSiliconBiological neuron model

Funding

  • National Science Foundation
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
  • Engineering and Physical Sciences Research Council
  • European Regional Development Fund
Citations
1,765
FWCI
81.42
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119
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References
Electrophysiological properties of neocortical neurons in vitro
Journal of Neurophysiology · 1982 · 945 citations
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
Translinear circuits: a proposed classification
Electronics Letters · 1975 · 449 citations
Matching properties of MOS transistors
IEEE Journal of Solid-State Circuits · 1989 · 3,274 citations
Neuromorphic electronic systems
Proceedings of the IEEE · 1990 · 2,221 citations
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