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A Role for Neural Integrators in Perceptual Decision Making

Cerebral CortexPublished 23 October 2003
Mark Mazurek, Jamie D. Roitman, Jochen Ditterich, Michael N. Shadlen
Citations637
SJR quartileQ1
SJR score1.45
SNIP1.03

TL;DR

A computational model of the decision process is developed using ensembles of neurons whose spiking activity mimics neurons recorded in the extrastriate visual cortex and a sensorimotor association area of the parietal lobe to instantiate the hypothesis that neurons in sensorim motor association areas compute the time integral of sensory signals from the visual cortex.

Abstract

Decisions based on uncertain information may benefit from an accumulation of information over time. We asked whether such an accumulation process may underlie decisions about the direction of motion in a random dot kinetogram. To address this question we developed a computational model of the decision process using ensembles of neurons whose spiking activity mimics neurons recorded in the extrastriate visual cortex (area MT or V5) and a sensorimotor association area of the parietal lobe (area LIP). The model instantiates the hypothesis that neurons in sensorimotor association areas compute the time integral of sensory signals from the visual cortex, construed as evidence for or against a proposition, and that the decision is made when the integrated evidence reaches a threshold. The model explains a variety of behavioral and physiological measurements obtained from monkeys.

Keywords

Neuroscience