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Cell type-specific variation of somatotopic precision across corticostriatal projections

View ORCID ProfileBryan M. Hooks, Andrew E. Papale, Ronald Paletzki, Muhammad Feroze, Brian S. Eastwood, Jonathan J. Couey, Johan Winnubst, Jayaram Chandrashekar, Charles R. Gerfen
doi: https://doi.org/10.1101/261446
Bryan M. Hooks
1Department of Neurobiology, University of Pittsburgh School of Medicine, Pittsburgh, PA
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  • For correspondence: hooksm@pitt.edu gerfenc@mail.nih.gov
Andrew E. Papale
1Department of Neurobiology, University of Pittsburgh School of Medicine, Pittsburgh, PA
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Ronald Paletzki
3Laboratory of Systems Neuroscience, NIMH, Bethesda, MD
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Muhammad Feroze
1Department of Neurobiology, University of Pittsburgh School of Medicine, Pittsburgh, PA
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Brian S. Eastwood
2MBF Bioscience, Williston, VT
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Jonathan J. Couey
1Department of Neurobiology, University of Pittsburgh School of Medicine, Pittsburgh, PA
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Johan Winnubst
4Janelia Research Campus, Ashburn, VA
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Jayaram Chandrashekar
4Janelia Research Campus, Ashburn, VA
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Charles R. Gerfen
3Laboratory of Systems Neuroscience, NIMH, Bethesda, MD
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  • For correspondence: hooksm@pitt.edu gerfenc@mail.nih.gov
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Abstract

The striatum shows general topographic organization and regional differences in behavioral functions. How corticostriatal topography differs across cortical areas and cell types to support these distinct functions is unclear. This study contrasted corticostriatal projections from two layer 5 cell types, intratelencephalic (IT-type) and pyramidal tract (PT-type) neurons, using viral vectors expressing fluorescent reporters in Cre-driver mice. Long-range corticostriatal projections from sensory and motor cortex are somatotopic, with a decreasing somatotopic specificity as injections move from sensory to motor and frontal areas. Somatotopic organization differs between IT-type and PT-type neurons, including injections in the same site, with IT-type neurons having higher somatotopic stereotypy than PT-type neurons. Furthermore, IT-type projections from interconnected cortical areas have stronger correlations in corticostriatal targeting than PT-type projections do. Thus, as predicted by a long-standing basal ganglia model, corticostriatal projections of interconnected cortical areas form parallel circuits in basal ganglia-thalamus-cortex loops.

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Posted February 07, 2018.
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Cell type-specific variation of somatotopic precision across corticostriatal projections
Bryan M. Hooks, Andrew E. Papale, Ronald Paletzki, Muhammad Feroze, Brian S. Eastwood, Jonathan J. Couey, Johan Winnubst, Jayaram Chandrashekar, Charles R. Gerfen
bioRxiv 261446; doi: https://doi.org/10.1101/261446
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Cell type-specific variation of somatotopic precision across corticostriatal projections
Bryan M. Hooks, Andrew E. Papale, Ronald Paletzki, Muhammad Feroze, Brian S. Eastwood, Jonathan J. Couey, Johan Winnubst, Jayaram Chandrashekar, Charles R. Gerfen
bioRxiv 261446; doi: https://doi.org/10.1101/261446

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