scholarly journals Alcohol-related context modulates neural correlates of inhibitory control in alcohol dependent patients: Preliminary data from an fMRI study using an alcohol-related Go/NoGo-task

2021 ◽  
Vol 398 ◽  
pp. 112973
Author(s):  
Maria Stein ◽  
Leonie Steiner ◽  
Werner Fey ◽  
Frauke Conring ◽  
Kathryn Rieger ◽  
...  
2006 ◽  
Author(s):  
Arthur Aron ◽  
Helen Fisher ◽  
Greg Strong ◽  
Deb Mashek ◽  
HaiFang Li ◽  
...  

2013 ◽  
Author(s):  
Antonello Pellicano ◽  
Houpand Horoufchin ◽  
Harshal Patel ◽  
Iring Koch ◽  
Ferdinand Binkofski

2004 ◽  
Vol 31 (S 1) ◽  
Author(s):  
R Ilg ◽  
K Vogeley ◽  
T Goschke ◽  
A Bolte ◽  
NJ Shah ◽  
...  

Author(s):  
Gianluca Serafini ◽  
Maurizio Pompili ◽  
Andrea Romano ◽  
Denise Erbuto ◽  
Dorian A. Lamis ◽  
...  

2021 ◽  
Vol 2021 (1) ◽  
Author(s):  
Mirko Lehmann ◽  
Claudia Neumann ◽  
Sven Wasserthal ◽  
Johannes Schultz ◽  
Achilles Delis ◽  
...  

Abstract Only little research has been conducted on the pharmacological underpinnings of metacognition. Here, we tested the modulatory effects of a single intravenous dose (100 ng/ml) of the N-methyl-D-aspartate-glutamate-receptor antagonist ketamine, a compound known to induce altered states of consciousness, on metacognition and its neural correlates. Fifty-three young, healthy adults completed two study phases of an episodic memory task involving both encoding and retrieval in a double-blind, placebo-controlled fMRI study. Trial-by-trial confidence ratings were collected during retrieval. Effects on the subjective state of consciousness were assessed using the 5D-ASC questionnaire. Confirming that the drug elicited a psychedelic state, there were effects of ketamine on all 5D-ASC scales. Acute ketamine administration during retrieval had deleterious effects on metacognitive sensitivity (meta-d′) and led to larger metacognitive bias, with retrieval performance (d′) and reaction times remaining unaffected. However, there was no ketamine effect on metacognitive efficiency (meta-d′/d′). Measures of the BOLD signal revealed that ketamine compared to placebo elicited higher activation of posterior cortical brain areas, including superior and inferior parietal lobe, calcarine gyrus, and lingual gyrus, albeit not specific to metacognitive confidence ratings. Ketamine administered during encoding did not significantly affect performance or brain activation. Overall, our findings suggest that ketamine impacts metacognition, leading to significantly larger metacognitive bias and deterioration of metacognitive sensitivity as well as unspecific activation increases in posterior hot zone areas of the neural correlates of consciousness.


2007 ◽  
Vol 18 (4) ◽  
pp. 740-751 ◽  
Author(s):  
N. Canessa ◽  
F. Borgo ◽  
S. F. Cappa ◽  
D. Perani ◽  
A. Falini ◽  
...  

2021 ◽  
Vol 6 (1) ◽  
Author(s):  
Geneviève Allaire-Duquette ◽  
Lorie-Marlène Brault Foisy ◽  
Patrice Potvin ◽  
Martin Riopel ◽  
Marilyne Larose ◽  
...  

AbstractA central challenge in developing conceptual understanding in science is overcoming naive ideas that contradict the content of science curricula. Neuroimaging studies reveal that high school and university students activate frontal brain areas associated with inhibitory control to overcome naive ideas in science, probably because they persist despite scientific training. However, no neuroimaging study has yet explored how persistent naive ideas in science are. Here, we report brain activations of 25 scientists with a Ph.D. in physics assessing the scientific value of naive ideas in science. Results show that scientists are slower and have lower accuracy when judging the scientific value of naive ideas compared to matched control ideas. fMRI data reveals that a network of frontal brain regions is more activated when judging naive ideas. Results suggest that naive ideas are likely to persist, even after completing a Ph.D. Advanced experts may still rely on high order executive functions like inhibitory control to overcome naive ideas when the context requires it.


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