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"Though this be madness, yet there is method in't." (Shakespeare: Hamlet: Act 2 Scene 2)

Why another neuron(al) theory and simulator

The classical (disciplinary) theories of neurons' operation, on the one side, are disciplinary (either electricity or thermodynamics, but not both), on the other side, are static (handling issuing an Action Potential as a perturbation to the resting state instead of being a transition state that is anaother state of its own right and its operationg mode drastically differs from the resting state.

Our dynamic theory establishes the correct (dynamical, cross-disciplinary) operating model, with the required physical, mathematical and algrorithmical background. The present chapter provides an in-code documentation of the C++ implementation of the model. Using Doxygen, that documentation is converted into a more readable (and beautify) format. The principles of the implementation are described in the theoretical part of the site. The description in confined to the most important and essential code modules.

Warning: Please consider that this development is a one-man undertaking, and it shall develop theory, evaluation of published experiment, software implementation, its testing and their documentation. There exist pre-developed code fragments, science publications and docs, so it develops relatively quickly, but it needs time to put them together in a consistent state. Please come back later and see if there is something new (see the date and version).

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