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Cortical microcircuits as gated-recurrent neural networks

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arxiv 1711.02448 v2 pith:NYN4OE3V submitted 2017-11-07 q-bio.NC cs.NEstat.ML

Cortical microcircuits as gated-recurrent neural networks

classification q-bio.NC cs.NEstat.ML
keywords corticalnetworksrecurrentacrosscircuitscomputationalmicrocircuitsneural
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Cortical circuits exhibit intricate recurrent architectures that are remarkably similar across different brain areas. Such stereotyped structure suggests the existence of common computational principles. However, such principles have remained largely elusive. Inspired by gated-memory networks, namely long short-term memory networks (LSTMs), we introduce a recurrent neural network in which information is gated through inhibitory cells that are subtractive (subLSTM). We propose a natural mapping of subLSTMs onto known canonical excitatory-inhibitory cortical microcircuits. Our empirical evaluation across sequential image classification and language modelling tasks shows that subLSTM units can achieve similar performance to LSTM units. These results suggest that cortical circuits can be optimised to solve complex contextual problems and proposes a novel view on their computational function. Overall our work provides a step towards unifying recurrent networks as used in machine learning with their biological counterparts.

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