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Synaptic integration of NMDA and non-NMDA receptors in large neuronal network models solved by means of differential equations

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Publication:1315274
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DOI10.1007/BF00197607zbMath0786.92006OpenAlexW1996966902MaRDI QIDQ1315274

V. Pereyra

Publication date: 26 April 1994

Published in: Biological Cybernetics (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1007/bf00197607


zbMATH Keywords

simulationforward Euler methodalpha function conductanceshigh-level neuronal circuit modellinearly damped oscillator equationNMDA receptornon-NMDA receptorsreceptor channel kinetics


Mathematics Subject Classification ID

Neural biology (92C20) Explicit solutions, first integrals of ordinary differential equations (34A05) Elementary classical functions (33B99) Exponential and trigonometric functions (33B10)


Related Items (2)

Advancing the Boundaries of High-Connectivity Network Simulation with Distributed Computing ⋮ Simplicity and Efficiency of Integrate-and-Fire Neuron Models




Cites Work

  • Unnamed Item
  • Modeling the electrical behavior of anatomically complex neurons using a network analysis program: Passive membrane
  • Introduction to Theoretical Neurobiology




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