@book{ae8ee5395c4f4cafa271728a8c3538aa,
title = "Neural circuit mechanism of decision uncertainty and change-of-mind",
abstract = "Decision-making is often accompanied by a degree of confidence on whether a choice is correct. Decision uncertainty, or lack in confidence, may lead to change-of-mind. Studies have identified the behavioural characteristics associated with decision confidence or change-of-mind, and their neural correlates. Although several theoretical accounts have been proposed, there is no neural model that can compute decision uncertainty and explain its effects on change-of-mind. We propose a neuronal circuit model that computes decision uncertainty while accounting for a variety of behavioural and neural data of decision confidence and change-of-mind, including testable model predictions. Our theoretical analysis suggests that change-of-mind occurs due to the presence of a transient uncertainty- induced choice-neutral stable steady state and noisy fluctuation within the neuronal network. Our distributed network model indicates that the neural basis of change-of-mind is more distinctively identified in motor-based neurons. Overall, our model provides a framework that unifies decision confidence and change-of-mind.",
keywords = "Decision-making, Change of mind, confidence, Neural model",
author = "Atiya, {Nadim A. A.} and Ignacio Rano and Girijesh Prasad and KongFatt Wong-Lin",
year = "2018",
doi = "10.1101/377432",
language = "English",
publisher = "bioRxiv",
}