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3 months ago

Learning in Wilson-Cowan model for metapopulation

Raffaele Marino Lorenzo Buffoni Lorenzo Chicchi Francesca Di Patti Diego Febbe Lorenzo Giambagli Duccio Fanelli

Learning in Wilson-Cowan model for metapopulation

Abstract

The Wilson-Cowan model for metapopulation, a Neural Mass Network Model, treats different subcortical regions of the brain as connected nodes, with connections representing various types of structural, functional, or effective neuronal connectivity between these regions. Each region comprises interacting populations of excitatory and inhibitory cells, consistent with the standard Wilson-Cowan model. By incorporating stable attractors into such a metapopulation model's dynamics, we transform it into a learning algorithm capable of achieving high image and text classification accuracy. We test it on MNIST and Fashion MNIST, in combination with convolutional neural networks, on CIFAR-10 and TF-FLOWERS, and, in combination with a transformer architecture (BERT), on IMDB, always showing high classification accuracy. These numerical evaluations illustrate that minimal modifications to the Wilson-Cowan model for metapopulation can reveal unique and previously unobserved dynamics.

Code Repositories

raffaelemarino/learning_in_wilsoncowan
Official
tf
Mentioned in GitHub

Benchmarks

BenchmarkMethodologyMetrics
image-classification-on-cifar-10CNN+ Wilson-Cowan model RNN
Percentage correct: 86.59
image-classification-on-fashion-mnistCNN+ Wilson-Cowan model RNN
Accuracy: 91.35
image-classification-on-fashion-mnistWilson-Cowan model RNN
Accuracy: 88.39
image-classification-on-flowers-tensorflowCNN+ Wilson-Cowan model RNN
Accuracy: 84.85
image-classification-on-mnistCNN+ Wilson-Cowan model RNN
Accuracy: 99.31
image-classification-on-mnistWilson-Cowan model RNN
Accuracy: 98.13
sentiment-analysis-on-imdbBert+ Wilson-Cowan model RNN
Accuracy: 87.46

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Learning in Wilson-Cowan model for metapopulation | Papers | HyperAI