Literature DB >> 19403819

Monkey prefrontal cortical pyramidal and putative interneurons exhibit differential patterns of activity between prosaccade and antisaccade tasks.

Kevin Johnston1, Joseph F X DeSouza, Stefan Everling.   

Abstract

Previous studies have shown that prefrontal cortex (PFC) neurons carry task-related activity; however, it is largely unknown how this selectivity is implemented in PFC microcircuitry. Here, we exploited known differences in extracellular action potential waveforms, and antidromic identification, to classify PFC neurons as putative pyramidal or interneurons, and investigate their relative contributions to task-selectivity. We recorded the activity of prefrontal neurons while monkeys performed a blocked pro/antisaccade task in which they were required to look either toward or away from a peripheral visual stimulus. We found systematic differences in activity between neuron classes. Putative pyramidal neurons had higher stimulus-related activity on antisaccade trials, whereas putative interneurons exhibited greater activity for prosaccades. These findings suggest that task-selectivity in the PFC may be shaped by interactions between these neuronal classes. They are also consistent with the robust deficits in antisaccade performance frequently observed in disease states associated with PFC dysfunction.

Entities:  

Mesh:

Year:  2009        PMID: 19403819      PMCID: PMC6665852          DOI: 10.1523/JNEUROSCI.5953-08.2009

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  31 in total

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2.  Spatial updating in monkey superior colliculus in the absence of the forebrain commissures: dissociation between superficial and intermediate layers.

Authors:  Catherine A Dunn; Nathan J Hall; Carol L Colby
Journal:  J Neurophysiol       Date:  2010-07-07       Impact factor: 2.714

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Journal:  J Physiol       Date:  2012-05-08       Impact factor: 5.182

4.  Cellular Classes in the Human Brain Revealed In Vivo by Heartbeat-Related Modulation of the Extracellular Action Potential Waveform.

Authors:  Clayton P Mosher; Yina Wei; Jan Kamiński; Anirban Nandi; Adam N Mamelak; Costas A Anastassiou; Ueli Rutishauser
Journal:  Cell Rep       Date:  2020-03-10       Impact factor: 9.423

5.  Neural correlates of perceptual decision making before, during, and after decision commitment in monkey frontal eye field.

Authors:  Long Ding; Joshua I Gold
Journal:  Cereb Cortex       Date:  2011-07-17       Impact factor: 5.357

6.  Selectivity of pyramidal cells and interneurons in the human medial temporal lobe.

Authors:  Matias J Ison; Florian Mormann; Moran Cerf; Christof Koch; Itzhak Fried; Rodrigo Quian Quiroga
Journal:  J Neurophysiol       Date:  2011-06-29       Impact factor: 2.714

7.  Stimulus selectivity and response latency in putative inhibitory and excitatory neurons of the primate inferior temporal cortex.

Authors:  Ryan E B Mruczek; David L Sheinberg
Journal:  J Neurophysiol       Date:  2012-08-29       Impact factor: 2.714

8.  Division of labor in frontal eye field neurons during presaccadic remapping of visual receptive fields.

Authors:  Sooyoon Shin; Marc A Sommer
Journal:  J Neurophysiol       Date:  2012-07-18       Impact factor: 2.714

9.  Common rules guide comparisons of speed and direction of motion in the dorsolateral prefrontal cortex.

Authors:  Cory R Hussar; Tatiana Pasternak
Journal:  J Neurosci       Date:  2013-01-16       Impact factor: 6.167

10.  Flexibility of sensory representations in prefrontal cortex depends on cell type.

Authors:  Cory R Hussar; Tatiana Pasternak
Journal:  Neuron       Date:  2009-12-10       Impact factor: 17.173

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