TY - JOUR
T1 - Neuronal Representations of Tactic-Based Sensorimotor Transformations in the Primate Medial Prefrontal, Presupplementary, and Supplementary Motor Areas
T2 - A Comparative Study
AU - Awan, Muhammad Ali Haider
AU - Mushiake, Hajime
AU - Matsuzaka, Yoshiya
N1 - Funding Information:
This research was supported by grants to YM (Japan Society for Promotion of Science Grants in Aid for Scientific Research 22500349) and HM [Platform of Advance Animal Model Support MEXT kakenhi 16H06276 (Ministry of Education, Culture,
Funding Information:
Funding. This research was supported by grants to YM (Japan Society for Promotion of Science Grants in Aid for Scientific Research 22500349) and HM [Platform of Advance Animal Model Support MEXT kakenhi 16H06276 (Ministry of Education, Culture, Sports, Science and Technology), Osciollogy MEXT kakenhi 15H05879, Japan Society of Promotion of Science kakenhi 19H03337, Mapping of Integrated Neurotechnologies for Disease Studies JP19dm0207001].
Publisher Copyright:
© Copyright © 2020 Awan, Mushiake and Matsuzaka.
PY - 2020/9/30
Y1 - 2020/9/30
N2 - Adaptive context-dependent behaviors necessitate the flexible selection of multiple behavioral tactics, i.e., internal protocols for selecting an action. Previous primate studies have shown that the posterior medial prefrontal cortex (pmPFC) contributes to the selection, retention, and use of tactics, but the manner in which this area employs selected tactics to convert sensory information into action and how that manner differs from downstream cortical motor areas have yet to be fully elucidated. To address this issue, the present study recorded neuronal activity in two monkeys as they performed a two-choice arm reaching task that required the selection of multiple tactics when converting spatial cue information into the direction of arm reaching. Neuronal populations in both pmPFC and presupplementary motor area (pre-SMA) represented tactics during their selection, maintenance in memory, and their use in determining an action. Additionally, they represented the monkeys’ action in the behavioral epoch in which the direction of reaching was determined. A striking contrast between the pmPFC and the pre-SMA was the representation of the spatial cue location in the former and its absence in the latter area. In individual neurons, neurons in pmPFC and pre-SMA had either single or mixed representation of tactics and action. Some of the pmPFC neurons additionally encoded cue location. Finally, neurons in the supplementary motor area mainly represented the action. Taken together, the present results indicate that, of these three areas, the pmPFC plays a cardinal role during the integration of behavioral tactics and visuospatial information when selecting an action.
AB - Adaptive context-dependent behaviors necessitate the flexible selection of multiple behavioral tactics, i.e., internal protocols for selecting an action. Previous primate studies have shown that the posterior medial prefrontal cortex (pmPFC) contributes to the selection, retention, and use of tactics, but the manner in which this area employs selected tactics to convert sensory information into action and how that manner differs from downstream cortical motor areas have yet to be fully elucidated. To address this issue, the present study recorded neuronal activity in two monkeys as they performed a two-choice arm reaching task that required the selection of multiple tactics when converting spatial cue information into the direction of arm reaching. Neuronal populations in both pmPFC and presupplementary motor area (pre-SMA) represented tactics during their selection, maintenance in memory, and their use in determining an action. Additionally, they represented the monkeys’ action in the behavioral epoch in which the direction of reaching was determined. A striking contrast between the pmPFC and the pre-SMA was the representation of the spatial cue location in the former and its absence in the latter area. In individual neurons, neurons in pmPFC and pre-SMA had either single or mixed representation of tactics and action. Some of the pmPFC neurons additionally encoded cue location. Finally, neurons in the supplementary motor area mainly represented the action. Taken together, the present results indicate that, of these three areas, the pmPFC plays a cardinal role during the integration of behavioral tactics and visuospatial information when selecting an action.
KW - action selection
KW - behavioral tactics
KW - posterior medial prefrontal cortex
KW - presupplementary motor area
KW - supplementary motor area
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U2 - 10.3389/fnsys.2020.536246
DO - 10.3389/fnsys.2020.536246
M3 - Article
AN - SCOPUS:85092741932
SN - 1662-5137
VL - 14
JO - Frontiers in Systems Neuroscience
JF - Frontiers in Systems Neuroscience
M1 - 536246
ER -