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Prefrontal Cortical Projection Neurons Targeting Dorsomedial Striatum Control Behavioral Inhibition

  • Huub Terra
  • , Bastiaan Bruinsma
  • , Sybren F. de Kloet
  • , Marcel van der Roest
  • , Tommy Pattij
  • , Huibert D. Mansvelder*
  • *Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

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Abstract

A neural pathway from prefrontal cortex (PFC) to dorsal striatum (DS) has been suggested to mediate cognitive control of behavior, including proactive inhibitory control and attention. However, a direct causal demonstration thereof is lacking. Here, we show that selective chemogenetic silencing of corticostriatal PFC neurons in rats increases premature responses. Wireless single-unit electrophysiological recordings of optogenetically identified corticostriatal PFC neurons revealed that the majority of these neurons encode behavioral trial outcome with persistent changes in firing rate. Attentional parameters were not affected by silencing corticostriatal PFC neurons, suggesting that these projection neurons encode a specific subset of cognitive behaviors. Compared to the general non-identified neuronal population in the PFC, frontostriatal neurons showed selective engagement during periods of inhibitory control. Our results demonstrate a role for corticostriatal neurons in inhibitory control and possibly suggest that distinct domains of cognitive control over behavior are encoded by specific projection neuron populations.

Original languageEnglish
Pages (from-to)4188-4200.e5
Number of pages19
JournalCurrent Biology
Volume30
Issue number21
Early online date3 Sept 2020
DOIs
Publication statusPublished - 2 Nov 2020

Funding

We thank R. de Haan, T. Heistek, P.G. Wiersma, A. van der Gracht, R. Elsinga, R.J. van de Geer, T. Brouwer, D.J. van Iperen, J. Tamis, H. Lodder, and A.J. Timmerman for technical support. H.D.M. received funding for this work from the Netherlands Organization for Scientific Research (NWO; VICI grant 865.13.002), European Union's Horizon 2020 Framework Programme for Research and Innovation under the Specific Grant Agreement No. 785907 (Human Brain Project SGA2), and NWO Gravitation program BRAINSCAPES: A Roadmap from Neurogenetics to Neurobiology (NWO: 024.004.012). Conceptualization, H.T. B.B. S.F.d.K. H.D.M. and T.P.; Investigation, H.T. B.B. and M.v.d.R.; Data Analysis, H.T. B.B. and H.D.M.; Writing – Original Draft, H.T.; Writing – Review & Editing, H.D.M. T.P. and B.B.; Funding Acquisition, H.D.M.; Resources, H.D.M. and T.P.; Supervision, H.D.M. and T.P. The authors declare no competing interests. We thank R. de Haan, T. Heistek, P.G. Wiersma, A. van der Gracht, R. Elsinga, R.J. van de Geer, T. Brouwer, D.J. van Iperen, J. Tamis, H. Lodder, and A.J. Timmerman for technical support. H.D.M. received funding for this work from the Netherlands Organization for Scientific Research (NWO; VICI grant 865.13.002 ), European Union’s Horizon 2020 Framework Programme for Research and Innovation under the Specific Grant Agreement No. 785907 (Human Brain Project SGA2), and NWO Gravitation program BRAINSCAPES: A Roadmap from Neurogenetics to Neurobiology (NWO: 024.004.012 ).

FundersFunder number
European Union's Horizon 2020 Framework Programme for Research and Innovation
Nederlandse Organisatie voor Wetenschappelijk Onderzoek865.13.002
Horizon 2020 Framework Programme785907
European Union’s Horizon 2020 Framework Programme for Research and Innovation024.004.012

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being

    Keywords

    • 5-CSRTT
    • attention
    • cognitive control
    • electrophysiology
    • goal-directed behavior
    • impulse control
    • inhibitory control
    • optogenetics
    • persistent activity
    • ramping activity

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