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Monkey supplementary eye field neurons signal the ordinal position of both actions and objects.


ABSTRACT: When a monkey executes a learned series of eye movements (for example, rightward followed by upward followed by leftward), neurons in the supplementary eye field (SEF) fire differentially in conjunction with the first, second, and third movements. It has not been clear whether such ordinal position signals are truly general, accompanying all forms of sequential behavior, or accompany only learned sequences of movements. To resolve this issue, we trained monkeys to perform both a serial action task (making saccades in a fixed sequence of directions) and a serial object task (making saccades to a fixed sequence of objects). We found concordant ordinal position selectivity in the two tasks. Neuronal selectivity for the passage of time and expectation of reward could not explain such concordance. We conclude that SEF neurons signal ordinal position consistently across different task contexts. These signals presumably underlie the ability of primates including humans to perform a broad range of serial order tasks.

SUBMITTER: Berdyyeva TK 

PROVIDER: S-EPMC2744217 | biostudies-literature | 2009 Jan

REPOSITORIES: biostudies-literature

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Monkey supplementary eye field neurons signal the ordinal position of both actions and objects.

Berdyyeva Tamara K TK   Olson Carl R CR  

The Journal of neuroscience : the official journal of the Society for Neuroscience 20090101 3


When a monkey executes a learned series of eye movements (for example, rightward followed by upward followed by leftward), neurons in the supplementary eye field (SEF) fire differentially in conjunction with the first, second, and third movements. It has not been clear whether such ordinal position signals are truly general, accompanying all forms of sequential behavior, or accompany only learned sequences of movements. To resolve this issue, we trained monkeys to perform both a serial action ta  ...[more]

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