Ramping activity in the striatum

Author:

Ponzi Adam,Wickens Jeff

Abstract

Control of the timing of behavior is thought to require the basal ganglia (BG) and BG pathologies impair performance in timing tasks. Temporal interval discrimination depends on the ramping activity of medium spiny neurons (MSN) in the main BG input structure, the striatum, but the underlying mechanisms driving this activity are unclear. Here, we combine an MSN dynamical network model with an action selection system applied to an interval discrimination task. We find that when network parameters are appropriate for the striatum so that slowly fluctuating marginally stable dynamics are intrinsically generated, up and down ramping populations naturally emerge which enable significantly above chance task performance. We show that emergent population activity is in very good agreement with empirical studies and discuss how MSN network dysfunction in disease may alter temporal perception.

Funder

Horizon 2020 Framework Programme

Publisher

Frontiers Media SA

Subject

Cellular and Molecular Neuroscience,Neuroscience (miscellaneous)

Reference129 articles.

1. Temporal convergence of dynamic cell assemblies in the striato-pallidal network;Adler;J. Neurosci,2012

2. Contributions of dopaminergic signaling to timing;Agostino;Curr. Opin. Behav. Sci,2016

3. Deficits in temporal processing correlate with clinical progression in Huntington's disease;Agostino;Acta Neurol. Scand,2017

4. Pathophysiological distortions in time perception and timed performance;Allman;Brain,2012

5. Cell assembly dynamics of sparsely-connected inhibitory networks: a simple model for the collective activity of striatal projection neurons;Angulo-Garcia,2016

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