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Journal Article

Citation

Ramakrishnan A, Murthy A. Prog. Brain Res. 2013; 202: 321-345.

Affiliation

National Brain Research Centre, Nainwal Mode, Manesar, Haryana, India.

Copyright

(Copyright © 2013, Elsevier Publishing)

DOI

10.1016/B978-0-444-62604-2.00017-4

PMID

23317839

Abstract

Accumulator models of decision making provide a unified framework to understand decision making and motor planning. In these models, the evolution of a decision is reflected in the accumulation of sensory information into a motor plan that reaches a threshold, leading to choice behavior. While these models provide an elegant framework to understand performance and reaction times, their ability to explain complex behaviors such as decision making and motor control of sequential movements in dynamic environments is unclear. To examine and probe the limits of online modification of decision making and motor planning, an oculomotor "redirect" task was used. Here, subjects were expected to change their eye movement plan when a new saccade target appeared. Based on task performance, saccade reaction time distributions, computational models of behavior, and intracortical microstimulation of monkey frontal eye fields, we show how accumulator models can be tested and extended to study dynamic aspects of decision making and motor control.


Language: en

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