Neural substrates underlying reconcentration for the preparation of an appropriate cognitive state to prevent future mistakes: A functional magnetic resonance imaging study

The ability to reconcentrate on the present situation by recognizing one’s own recent errors is a cognitive mechanism that is crucial for safe and appropriate behavior in a particular situation. However, an individual may not be able to adequately perform a subsequent task even if he/she recognize h...

Full description

Bibliographic Details
Main Authors: Naoki eMiura, Takayuki eNozawa, Makoto eTakahashi, Ryoichi eYokoyama, Yukako eSasaki, Kohei eSakaki, Ryuta eKawashima
Format: Article
Language:English
Published: Frontiers Media S.A. 2015-11-01
Series:Frontiers in Human Neuroscience
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fnhum.2015.00603/full
id doaj-25e01a28ba58486fbb43875d1b82a6b5
record_format Article
spelling doaj-25e01a28ba58486fbb43875d1b82a6b52020-11-25T03:22:51ZengFrontiers Media S.A.Frontiers in Human Neuroscience1662-51612015-11-01910.3389/fnhum.2015.00603164434Neural substrates underlying reconcentration for the preparation of an appropriate cognitive state to prevent future mistakes: A functional magnetic resonance imaging studyNaoki eMiura0Takayuki eNozawa1Makoto eTakahashi2Ryoichi eYokoyama3Ryoichi eYokoyama4Yukako eSasaki5Kohei eSakaki6Ryuta eKawashima7Ryuta eKawashima8Tohoku Institute of TechnologyTohoku UniversityTohoku UniversityTohoku UniversityKobe University School of MedicineTohoku UniversityTohoku UniversityTohoku UniversityTohoku UniversityThe ability to reconcentrate on the present situation by recognizing one’s own recent errors is a cognitive mechanism that is crucial for safe and appropriate behavior in a particular situation. However, an individual may not be able to adequately perform a subsequent task even if he/she recognize his/her own error; thus, it is hypothesized that the neural mechanisms underlying the reconcentration process are different from the neural substrates supporting error recognition. The present study performed a functional magnetic resonance imaging (fMRI) analysis to explore the neural substrates associated with reconcentration related to achieving an appropriate cognitive state, and to dissociate these brain regions from the neural substrates involved in recognizing one’s own mistake. This study included 44 healthy volunteers who completed an experimental procedure that was based on the Eriksen flanker task and included feedback regarding the results of the current trial. The hemodynamic response induced by each instance of feedback was modeled using a combination of the successes and failures of the current and subsequent trials in order to identify the neural substrates underlying the ability to reconcentrate for the next situation and to dissociate them from those involved in recognizing current errors. The fMRI findings revealed significant and specific activation in the dorsal aspect of the medial prefrontal cortex (MFC) when participants successfully reconcentrated on the task after recognizing their own error based on feedback. Additionally, this specific activation was clearly dissociated from the activation foci that occurred during error recognition. These findings indicate that the dorsal aspect of the MFC may be a distinct functional region that specifically supports the reconcentration process and that is associated with the prevention of successive errors when a human subject recognizes his/her own mistake. Furthermore, it is likely that this reconcentration mechanism acts as a trigger to perform successful post-error behavioral adjustments.http://journal.frontiersin.org/Journal/10.3389/fnhum.2015.00603/fullcognitive controlfunctional MRImedial frontal cortex.post-error adjustmentsReconcentration
collection DOAJ
language English
format Article
sources DOAJ
author Naoki eMiura
Takayuki eNozawa
Makoto eTakahashi
Ryoichi eYokoyama
Ryoichi eYokoyama
Yukako eSasaki
Kohei eSakaki
Ryuta eKawashima
Ryuta eKawashima
spellingShingle Naoki eMiura
Takayuki eNozawa
Makoto eTakahashi
Ryoichi eYokoyama
Ryoichi eYokoyama
Yukako eSasaki
Kohei eSakaki
Ryuta eKawashima
Ryuta eKawashima
Neural substrates underlying reconcentration for the preparation of an appropriate cognitive state to prevent future mistakes: A functional magnetic resonance imaging study
Frontiers in Human Neuroscience
cognitive control
functional MRI
medial frontal cortex.
post-error adjustments
Reconcentration
author_facet Naoki eMiura
Takayuki eNozawa
Makoto eTakahashi
Ryoichi eYokoyama
Ryoichi eYokoyama
Yukako eSasaki
Kohei eSakaki
Ryuta eKawashima
Ryuta eKawashima
author_sort Naoki eMiura
title Neural substrates underlying reconcentration for the preparation of an appropriate cognitive state to prevent future mistakes: A functional magnetic resonance imaging study
title_short Neural substrates underlying reconcentration for the preparation of an appropriate cognitive state to prevent future mistakes: A functional magnetic resonance imaging study
title_full Neural substrates underlying reconcentration for the preparation of an appropriate cognitive state to prevent future mistakes: A functional magnetic resonance imaging study
title_fullStr Neural substrates underlying reconcentration for the preparation of an appropriate cognitive state to prevent future mistakes: A functional magnetic resonance imaging study
title_full_unstemmed Neural substrates underlying reconcentration for the preparation of an appropriate cognitive state to prevent future mistakes: A functional magnetic resonance imaging study
title_sort neural substrates underlying reconcentration for the preparation of an appropriate cognitive state to prevent future mistakes: a functional magnetic resonance imaging study
publisher Frontiers Media S.A.
series Frontiers in Human Neuroscience
issn 1662-5161
publishDate 2015-11-01
description The ability to reconcentrate on the present situation by recognizing one’s own recent errors is a cognitive mechanism that is crucial for safe and appropriate behavior in a particular situation. However, an individual may not be able to adequately perform a subsequent task even if he/she recognize his/her own error; thus, it is hypothesized that the neural mechanisms underlying the reconcentration process are different from the neural substrates supporting error recognition. The present study performed a functional magnetic resonance imaging (fMRI) analysis to explore the neural substrates associated with reconcentration related to achieving an appropriate cognitive state, and to dissociate these brain regions from the neural substrates involved in recognizing one’s own mistake. This study included 44 healthy volunteers who completed an experimental procedure that was based on the Eriksen flanker task and included feedback regarding the results of the current trial. The hemodynamic response induced by each instance of feedback was modeled using a combination of the successes and failures of the current and subsequent trials in order to identify the neural substrates underlying the ability to reconcentrate for the next situation and to dissociate them from those involved in recognizing current errors. The fMRI findings revealed significant and specific activation in the dorsal aspect of the medial prefrontal cortex (MFC) when participants successfully reconcentrated on the task after recognizing their own error based on feedback. Additionally, this specific activation was clearly dissociated from the activation foci that occurred during error recognition. These findings indicate that the dorsal aspect of the MFC may be a distinct functional region that specifically supports the reconcentration process and that is associated with the prevention of successive errors when a human subject recognizes his/her own mistake. Furthermore, it is likely that this reconcentration mechanism acts as a trigger to perform successful post-error behavioral adjustments.
topic cognitive control
functional MRI
medial frontal cortex.
post-error adjustments
Reconcentration
url http://journal.frontiersin.org/Journal/10.3389/fnhum.2015.00603/full
work_keys_str_mv AT naokiemiura neuralsubstratesunderlyingreconcentrationforthepreparationofanappropriatecognitivestatetopreventfuturemistakesafunctionalmagneticresonanceimagingstudy
AT takayukienozawa neuralsubstratesunderlyingreconcentrationforthepreparationofanappropriatecognitivestatetopreventfuturemistakesafunctionalmagneticresonanceimagingstudy
AT makotoetakahashi neuralsubstratesunderlyingreconcentrationforthepreparationofanappropriatecognitivestatetopreventfuturemistakesafunctionalmagneticresonanceimagingstudy
AT ryoichieyokoyama neuralsubstratesunderlyingreconcentrationforthepreparationofanappropriatecognitivestatetopreventfuturemistakesafunctionalmagneticresonanceimagingstudy
AT ryoichieyokoyama neuralsubstratesunderlyingreconcentrationforthepreparationofanappropriatecognitivestatetopreventfuturemistakesafunctionalmagneticresonanceimagingstudy
AT yukakoesasaki neuralsubstratesunderlyingreconcentrationforthepreparationofanappropriatecognitivestatetopreventfuturemistakesafunctionalmagneticresonanceimagingstudy
AT koheiesakaki neuralsubstratesunderlyingreconcentrationforthepreparationofanappropriatecognitivestatetopreventfuturemistakesafunctionalmagneticresonanceimagingstudy
AT ryutaekawashima neuralsubstratesunderlyingreconcentrationforthepreparationofanappropriatecognitivestatetopreventfuturemistakesafunctionalmagneticresonanceimagingstudy
AT ryutaekawashima neuralsubstratesunderlyingreconcentrationforthepreparationofanappropriatecognitivestatetopreventfuturemistakesafunctionalmagneticresonanceimagingstudy
_version_ 1724609222800310272