Most previous neuroimaging studies of Stroop paradigms have not provided sufficient information about the relationship between response times (RTs) and imaging signals. The objective of the present study is to build a linear model to explore the relationship between RTs and imaging signals. Neural information in Stroop tasks under the preconditions of high conflict and adjustment was extracted by using a method of modifying the ratio of congruent trials to incongruent trials in blocks. It was shown that the signals of the dorsal lateral prefrontal cortex (DLPFC) were negatively associated with the RTs for high-ratio trials in both blocks, and the signals of the anterior cingulate cortex (ACC) were negatively associated with the RTs for inco...
It is well documented that the anterior cingulate cortex (ACC) and the dorsolateral prefrontal corte...
Recent clinical and imaging studies suggest the involvement of anterior brain regions in the Stroop ...
Contains fulltext : 99705-OA.pdf (publisher's version ) (Open Access)In Stroop-lik...
Contains fulltext : 56886.pdf (publisher's version ) (Closed access)Cognitive cont...
Cognitive control includes the ability to formulate goals and plans of action and to follow these wh...
Abstract: We investigated the relationship between behavioral measures of conflict and the degree of...
This study used a proportion congruency manipulation in the Stroop task in order to investigate, at ...
This study used a proportion congruency manipulation in the Stroop task in order to investigate, at ...
An enduring question in selective attention research is whether we can successfully ignore an irrele...
Performance on the Stroop task is associated to a large antero-posterior cerebral network involving ...
International audienceAn enduring question in selective attention research is whether we can success...
Neuroscience research has identified the involvement of the dorsolateral prefrontal cortex (DLPFC) i...
The successful resolution of ever-changing conflicting contexts requires efficient cognitive control...
Background: Cognitive control of brain regions can be determined by the tasks involving the cognitiv...
Cognitive control refers to the ability to produce flexible, goal-oriented behavior in the face of c...
It is well documented that the anterior cingulate cortex (ACC) and the dorsolateral prefrontal corte...
Recent clinical and imaging studies suggest the involvement of anterior brain regions in the Stroop ...
Contains fulltext : 99705-OA.pdf (publisher's version ) (Open Access)In Stroop-lik...
Contains fulltext : 56886.pdf (publisher's version ) (Closed access)Cognitive cont...
Cognitive control includes the ability to formulate goals and plans of action and to follow these wh...
Abstract: We investigated the relationship between behavioral measures of conflict and the degree of...
This study used a proportion congruency manipulation in the Stroop task in order to investigate, at ...
This study used a proportion congruency manipulation in the Stroop task in order to investigate, at ...
An enduring question in selective attention research is whether we can successfully ignore an irrele...
Performance on the Stroop task is associated to a large antero-posterior cerebral network involving ...
International audienceAn enduring question in selective attention research is whether we can success...
Neuroscience research has identified the involvement of the dorsolateral prefrontal cortex (DLPFC) i...
The successful resolution of ever-changing conflicting contexts requires efficient cognitive control...
Background: Cognitive control of brain regions can be determined by the tasks involving the cognitiv...
Cognitive control refers to the ability to produce flexible, goal-oriented behavior in the face of c...
It is well documented that the anterior cingulate cortex (ACC) and the dorsolateral prefrontal corte...
Recent clinical and imaging studies suggest the involvement of anterior brain regions in the Stroop ...
Contains fulltext : 99705-OA.pdf (publisher's version ) (Open Access)In Stroop-lik...