The Architecture of a Biologically Plausible Language Organ
Computation and Language
2023-06-28 v1 Neurons and Cognition
Abstract
We present a simulated biologically plausible language organ, made up of stylized but realistic neurons, synapses, brain areas, plasticity, and a simplified model of sensory perception. We show through experiments that this model succeeds in an important early step in language acquisition: the learning of nouns, verbs, and their meanings, from the grounded input of only a modest number of sentences. Learning in this system is achieved through Hebbian plasticity, and without backpropagation. Our model goes beyond a parser previously designed in a similar environment, with the critical addition of a biologically plausible account for how language can be acquired in the infant's brain, not just processed by a mature brain.
Keywords
Cite
@article{arxiv.2306.15364,
title = {The Architecture of a Biologically Plausible Language Organ},
author = {Daniel Mitropolsky and Christos H. Papadimitriou},
journal= {arXiv preprint arXiv:2306.15364},
year = {2023}
}
Comments
9 pages, 4 figures