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neuromorphic_computers's Introduction

neuromorphic_computers

Motivation:

  1. Is there a better test of neuroscience theory than to physically build a brain?
  2. Neuromorphic computers promise to significantly reduce the expected carbon footprint of AI technology.
  3. This is closely related to my interest in the thermodynamics of computation.

Basics:

  1. Neural Engineering: Computation, Representation, and Dynamics in Neurobiological Systems (Computational Neuroscience Series) by Chris Eliasmith & Charles Anderson
  2. Neuronal Dynamics(online book)
  3. Human Brain Project lectures

Research labs:

  1. Electronic Visions
  2. Human Brain Project
  3. Brains in Silicon
  4. http://avlsi.csl.yale.edu/bio.php
  5. Neuromorphic Cognitive Robots
  6. Neuromorphic Cognitive Systems
  7. Eliasmith Research Group

Projects:

  1. BrainScaleS
  2. Nengo
  3. Spinnaker

Researchers:

  1. Kwabena Boahen, Stanford
  2. Giacomo Indiveri, ETH
  3. https://www.nist.gov/people/jeff-shainline
  4. https://www.kip.uni-heidelberg.de/user/mpedro/
  5. Yulia Sandamirskaya
  6. Mike Davies, Intel
  7. Mihai Petrovici, Bern Computational Neuroscience group

References on neuromorphic computation:

  1. G. Indiveri et al. Neuromorphic Silicon Neuron Circuits
  2. G. Indiveri et al. Memory and information processing in neuromorphic systems. 2015.
  3. S. Liu & T. Delbruck. Neuromorphic sensory systems. 2010.
  4. K. Boahen. Point-to-point connectivity between neuromorphic chips using address events. 2000.

...more will be added soon.

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