The main aim of this study was to investigate the differential processing of correct and incorrect equations to gain further insight into the neural processes involved in arithmetic reasoning. Electrophysiological studies in humans have demonstrated that processing incorrect arithmetic equations (e.g., 2 + 2 = 5) elicits a prominent event-related potential (ERP) compared to processing correct equations (e.g., 2 + 2 = 4). In the present study, we investigated the neural substrates of this process using event-related functional magnetic resonance imaging (fMRI). Subjects were presented with arithmetic equations and asked to indicate whether the solution displayed was correct or incorrect. We found greater activation to incorrect, compared to correct equations, in the left dorsolateral prefrontal cortex (DLPFC, BA 46) and the left ventrolateral prefrontal cortex (VLPFC, BA 47). Our results provide the first brain imaging evidence for differential processing of incorrect vs. correct equations. The prefrontal cortex activation observed in processing incorrect equations overlaps with brain areas known to be involved in working memory and interference processing. The DLPFC region differentially activated by incorrect equations was also involved in overall arithmetic processing, whereas the VLPFC was activated only during the differential processing of incorrect equations. Differential response to correct and incorrect arithmetic equations was not observed in parietal cortex regions such as the angular gyrus and intra-parietal sulcus, which are known to play a specific role in performing arithmetic computations. The pattern of brain response observed is consistent with the hypothesis that processing incorrect equations involves detection of an incorrect answer and resolution of the interference between the internally computed and externally presented incorrect answer. More specifically, greater activation during processing of incorrect equations appears to reflect additional operations involved in maintaining the results in working memory, while subjects attempt to resolve the conflict and select a response. These findings allow us to further delineate and dissociate the contributions of prefrontal and parietal cortices to arithmetic reasoning.
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http://dx.doi.org/10.1002/hbm.10035 | DOI Listing |
PLoS One
January 2025
Department of Pharmacology and Therapeutics, College of Medicine and Health Sciences, The United Arab Emirates University, Al Ain, United Arab Emirates.
SSM Ment Health
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Division of General Internal Medicine, Department of Medicine, Albert Einstein College of Medicine, Bronx, NY, USA.
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Department Forensic Medicine, School of Medicine, University of Marmara, Istanbul, Turkey.
Just like in other medical specialties, medical malpractice claims arise in pathology as well. Although the exact rate of malpractice related to pathology cannot be clearly stated in Turkey, it is known to occur more frequently during the diagnosis stage, as reported worldwide. This study discusses the measures that should be taken to prevent these claims by comparing cases with alleged malpractice in pathology, evaluated by the Council of Forensic Medicine, with the literature.
View Article and Find Full Text PDFEnviron Monit Assess
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Department of Chemical Engineering, Faculty of Chemistry and Chemical Engineering, Babes-Bolyai University of Cluj-Napoca, 11 Arany János Street, 400028, Cluj-Napoca, Romania.
One of the leading challenges in Water Resource Recovery Facility monitoring and control is the poor data quality and sensor consistency due to the tough and complex circumstances of the process operation. This paper presents a new principal component analysis fault detection approach for the nitrate and nitrite concentration sensor based on Water Resource Recovery Facility measurements, together with the Fisher Discriminant Analysis identification of fault types. Five malfunction cases were considered: constant additive error, ramp changing error in time, incorrect amplification error, random additive error, and unchanging sensor value error.
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Achutha Menon Centre for Health Science Studies, Sree Chitra Tirunal Institute For Medical Sciences and Technology, Trivandrum, Kerala, India.
Introduction: Blood groups documented in motor vehicle driving licenses can provide quick information during emergency transfusion requirements and imbibe self-awareness about one's blood group. The tendency of applicants to mention blood groups without verification during the application may result in incorrect documentation of blood groups in their driving license. The study aims to assess the reliability of the blood groups in driving licenses and their association with sociodemographic variables.
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