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DiPDE (dipde) is a simulation platform for numerically solving the time evolution of coupled networks of neuronal populations. Instead of solving the subthreshold dynamics of individual model leaky-integrate-and-fire (LIF) neurons, dipde models the voltage distribution of a population of neurons with a single population density equation. In this way, dipde can facilitate the fast exploration of mesoscale (population-level) network topologies, where large populations of neurons are treated as homogeneous with random fine-scale connectivity.

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We are planning on occasional updating this tool with no fixed schedule. Community involvement is encouraged through both issues and pull requests.

Copyright 2020 Allen Institute

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Numerical solver for coupled population density equations

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