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Updated: Oct 9, 2025

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Published on: March 9, 2019
Markov Chain Abstractions of Electrochemical Reaction-Diffusion in Synaptic Transmission for Neuromorphic Computing
Margot Wagner1,2,3, Thomas M Bartol3,4, Terrence J Sejnowski1,2,3,4,5
1Department of Bioengineering, University of California, San Diego, La Jolla, CA, United States.
Abstract:
Progress in computational neuroscience toward understanding brain function is challenged both by the complexity of molecular-scale electrochemical interactions at the level of individual neurons and synapses and the dimensionality of network dynamics across the brain covering a vast range of spatial and temporal scales. Our work abstracts an existing highly detailed, biophysically realistic 3D reaction-diffusion model of a chemical synapse to a compact internal state space representation that maps onto parallel neuromorphic hardware for efficient emulation at a very large scale and offers near-equivalence in input-output dynamics while preserving biologically interpretable tunable parameters.
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