The Effects of Guanfacine and Phenylephrine on a Spiking Neuron Model of Working Memory

Topics in Cognitive Science 8 (4):117-134 (2016)
  Copy   BIBTEX

Abstract

We use a spiking neural network model of working memory capable of performing the spatial delayed response task to investigate two drugs that affect WM: guanfacine and phenylephrine. In this model, the loss of information over time results from changes in the spiking neural activity through recurrent connections. We reproduce the standard forgetting curve and then show that this curve changes in the presence of GFC and PHE, whose application is simulated by manipulating functional, neural, and biophysical properties of the model. In particular, applying GFC causes increased activity in neurons that are sensitive to the information currently being remembered, while applying PHE leads to decreased activity in these same neurons. Interestingly, these differential effects emerge from network-level interactions because GFC and PHE affect all neurons equally. We compare our model to both electrophysiological data from neurons in monkey dorsolateral prefrontal cortex and to behavioral evidence from monkeys performing the DRT.

Other Versions

reprint Duggins, Peter; Stewart, Terrence C.; Choo, Xuan; Eliasmith, Chris (2017) "The Effects of Guanfacine and Phenylephrine on a Spiking Neuron Model of Working Memory". Topics in Cognitive Science 9(1):117-134

Links

PhilArchive



    Upload a copy of this work     Papers currently archived: 101,139

External links

Setup an account with your affiliations in order to access resources via your University's proxy server

Through your library

Analytics

Added to PP
2016-12-21

Downloads
49 (#449,045)

6 months
5 (#1,047,105)

Historical graph of downloads
How can I increase my downloads?

Author's Profile

Chris Eliasmith
University of Waterloo

References found in this work

No references found.

Add more references