NEURON
8.2.2

Building:

  • Installation
  • CMake Build Options
  • Developer Builds

User documentation:

  • Training videos
    • NEURON 2021 Online Course
    • NetPyNE 2021 Online Course
    • CNS 2021 Online Tutorial
    • INCF/CNS 2022 Online Tutorial
  • Guides
  • NEURON Course Exercises
  • The NEURON forum
  • Publications about NEURON
  • Publications using NEURON

NEURON scripting:

  • NEURON Python documentation
  • NEURON HOC documentation
  • Other scripting languages
  • Python tutorials
  • Python RXD tutorials
  • CoreNEURON

Developer documentation:

  • NEURON SCM and Release
  • NEURON Development topics
  • C/C++ API

Removed Features

  • Removed Features

Changelog

  • NEURON 8.2
  • NEURON 8.1
  • NEURON 8.0
  • Contributors
  • Feedback / Help
NEURON
  • Training videos
  • Edit on GitHub

Training videos

We have a YouTube channel with NEURON videos.

  • NEURON 2021 Online Course
    • Basic Concepts and GUI
    • Branched cells
    • Adding ion channels
    • Python scripting
    • Networks and numerical methods
    • ModelDB exercises 2021-07-27
    • Scaling, spines, and reading HOC 2021-07-29
    • Building GUI interfaces, Initialization, and Circuits 2021-08-03
  • NetPyNE 2021 Online Course
    • Course introduction
    • Single neuron theory I
    • General tech basics
    • NEURON basics
    • Single neuron theory II
    • NEURON RxD
    • Network and synapse theory
    • NetPyNE GUI
    • NetPyNE analysis and plotting
    • NetPyNE cell imports
    • Building data driven multiscale models
    • Parameter exploration and optimization
    • NetPyNE and RxD
    • NetPyNE hands on batches
    • NetPyNE virtual environments on mac and linux
  • CNS 2021 Online Tutorial
  • INCF/CNS 2022 Online Tutorial
    • Course Welcome
    • NEURON concepts
    • Using NEURON’s GUI to build and simulate cells
    • Using NMODL to add new biophysical mechanisms
    • Using resources from ModelDB and NeuroMorpho.Org
    • Networks: spike-triggered synaptic transmission, events, and artificial cells
    • Numerical Methods: accuracy, stability, speed
    • Scripting NEURON
    • Numerical methods: adaptive integration
    • Reaction-diffusion simulations
    • Other resources and wrap-up
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