Frontal eye field neurons with spatial representations predicted by their subcortical input.

dc.contributor.author

Crapse, Trinity B

dc.contributor.author

Sommer, Marc A

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United States

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2016-03-25T02:33:54Z

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2009-04-22

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The frontal eye field (FEF) is a cortical structure involved in cognitive aspects of eye movement control. Neurons in the FEF, as in most of cerebral cortex, primarily represent contralateral space. They fire for visual stimuli in the contralateral field and for saccadic eye movements made to those stimuli. Yet many FEF neurons engage in sophisticated functions that require flexible spatial representations such as shifting receptive fields and vector subtraction. Such functions require knowledge about all of space, including the ipsilateral hemifield. How does the FEF gain access to ipsilateral information? Here, we provide evidence that one source of ipsilateral information may be the opposite superior colliculus (SC) in the midbrain. We physiologically identified neurons in the FEF that receive input from the opposite SC, same-side SC, or both. We found a striking structure-function relationship: the laterality of the response field of an FEF neuron was predicted by the laterality of its SC inputs. FEF neurons with input from the opposite SC had ipsilateral fields, whereas neurons with input from the same-side SC had contralateral fields. FEF neurons with input from both SCs had lateralized fields that could point in any direction. The results suggest that signals from the two SCs provide each FEF with information about all of visual space, a prerequisite for higher level sensorimotor computations.

dc.identifier

https://www.ncbi.nlm.nih.gov/pubmed/19386927

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29/16/5308

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1529-2401

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https://hdl.handle.net/10161/11730

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eng

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Society for Neuroscience

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J Neurosci

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10.1523/JNEUROSCI.4906-08.2009

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Animals

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Cerebral Cortex

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Macaca mulatta

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Neurons

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Photic Stimulation

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Predictive Value of Tests

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Psychomotor Performance

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Superior Colliculi

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Visual Fields

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Visual Pathways

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Frontal eye field neurons with spatial representations predicted by their subcortical input.

dc.type

Journal article

duke.contributor.orcid

Sommer, Marc A|0000-0001-5061-763X

pubs.author-url

https://www.ncbi.nlm.nih.gov/pubmed/19386927

pubs.begin-page

5308

pubs.end-page

5318

pubs.issue

16

pubs.organisational-group

Basic Science Departments

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Biomedical Engineering

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Center for Cognitive Neuroscience

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Duke

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Duke Institute for Brain Sciences

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Institutes and Provost's Academic Units

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Neurobiology

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Pratt School of Engineering

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School of Medicine

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University Institutes and Centers

pubs.publication-status

Published

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29

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