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5 results for “Stroop task”
Interference in the shared-stroop task: a comparison of self- and other-monitoring
<p>Co-acting participants represent and integrate each other's actions, even when they are not required to monitor one another. However, monitoring the actions of a partner is an important component of successful interactions, and particularly of linguistic interactions. Moreover, monitoring others may rely on similar mechanisms to those that are involved in self-monitoring. In order to investigate the effect of monitoring on shared linguistic representations, we combined a monitoring task with the shared Stroop task. In the shared Stroop task, one participant named the colour of words in one colour (e.g., red) while ignoring stimuli in the other colour (e.g., green); the other participant either named the colour of words in the other colour or did not respond. Crucially, participants either had to provide feedback about the correctness of their partner's response (Experiment 3) or did not (Experiment 2). The results showed that interference was greater when both participants responded than when they did not, but only when partners provided feedback. We argue that feedback increased joint task interference because in order to monitor their partner, participants had to represent their target utterance, and this representation interfered with self-monitoring of their own utterance.</p>
Interference in the shared-stroop task: a comparison of self- and other-monitoring
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An orally angiotensin - (1 – 7) inclusion compound reduce time to reaction in 2 stroop task and modify heart rate variability after continuous test in mountain 3 bike cyclists
<p>data for An orally angiotensin - (1 – 7) inclusion compound reduce time to reaction in 2 stroop task and modify heart rate variability after continuous test in mountain 3 bike cyclists,<br> </p> <p>Recently our group showed that hydroxypropyl β-cyclodextrin (HPβ-CD)-Angiotensin-(1-7) (HPβ-CD-Ang-[1-7]) oral formulation affects performance and decreases the perceived effort of mountain bike (MTB) athletes.</p> <p>Twenty-one male MTB practitioners were divided into a continuous protocol time trial and repeated sprint groups. Three hours before a 20-km cycling time trial or 4×30-s repeated all-out sprints on a leg cycle ergometer, the athletes received HPβ-CD-Ang-(1-7) (0.8 mg) or HPβ-CD-placebo (only HPβ-CD) oral capsules over a 7-day interval randomized crossover design. At rest and immediately after the exercise protocol, the ratings of perceived recovery and the visual analog scale were assessed, and the volunteers completed the Stroop task (ST). Heart rate variability was measured at rest and peak effort. There were no differences in the perceived variables. The ST showed that HPβ-CD-Ang-(1-7) supplementation reduced the reaction time (rest 1032±331 ms vs. after protocol 902±286 ms, p=0.05) after the continuous time trial. The withdrawal of the parasympathetic components in the peak effort to the continuous protocol was not different from that of rest in the HPβ-CD-Ang-(1-7) condition. The results are pioneering, especially in humans, but indicate that Angiotensin-(1-7) potentially affects reaction time and the parasympathetic withdrawal after continuous protocol time trial.</p>
Influence of Spinal Manipulative Therapy Upon Stroop Task Performance
ClinicalTrials.gov study NCT00335426. IPD Sharing: Not stated. Countries: 1. Publications: 0.
The Effect of Inhibitory Control Processes Induced by Rectal Distension on Impulse Control Measured by Stroop Task Performance and Intertemporal Discounting.
ClinicalTrials.gov study NCT02043561. IPD Sharing: Not stated. Countries: 1. Publications: 0.
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