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Article

Neuropsychological Assessment of the Relationship of Working Memory with K-BIT Matrices and Vocabulary in Normal Development and ADHD Children and Adolescents

by
Elena I. Rodriguez-Martínez
1,
Raquel Muñoz-Pradas
2,
Antonio Arjona
2,
Brenda Y. Angulo-Ruiz
2,
Vanesa Muñoz
2 and
Carlos M. Gómez
2,*
1
Developmental and Educational Psychology Department, University of Sevilla, 41018 Sevilla, Spain
2
Human Psychobiology Laboratory, Experimental Psychology Department, University of Sevilla, 41018 Sevilla, Spain
*
Author to whom correspondence should be addressed.
Brain Sci. 2023, 13(11), 1538; https://doi.org/10.3390/brainsci13111538
Submission received: 25 September 2023 / Revised: 28 October 2023 / Accepted: 30 October 2023 / Published: 31 October 2023
(This article belongs to the Special Issue Advances in ADHD)

Abstract

Background: The present report tries to understand the possible relationship between working memory (WM) and intelligence measurements, using the direct scores of the Working Memory Test Battery for Children (WMTBC) and Kaufman’s Brief Intelligence Test (K-BIT), in normal development (ND) and diagnosed attention deficit hyperactivity disorder (ADHD) children and adolescents. Results: Partial correlations, discounting the effect of age, showed a significant correlation in ND subjects between the central executive (CE) component of WM and the WM visuospatial sketchpad (VSS) component and the WM phonological loop (PL); also, significant correlations were obtained for the WM VSS with the K-BIT Matrices scores, the WM PL with the K-BIT Vocabulary, and the K-BIT Matrices scores with the K-BIT Vocabulary. For ADHD subjects, there were significant correlations between WM VSS and WM CE, and WM VSS and K-BIT Matrices. We tested the robustness of these correlations by selecting a small number of subjects through permutations; a robust correlation between WM CE and WM PL in ND, and between WM VSS and WM CE and WM VSS and K-BIT Matrices scores was obtained. These results were also supported by mediation analysis. Conclusions: There is a relationship during development between WM as measured with WMTBC and general intelligence as measured with K-BIT in ND and ADHD subjects. The dysexecutive character of ADHD has been shown, given that by controlling for intelligence, the differences in WM performance between ND and ADHD disappear, except for WM CE. The results suggest that in ADHD subjects, the WM VSS component presents a more pivotal role during cognitive processing compared to ND subjects.
Keywords: ADHD; central executive; phonological loop; visuospatial sketchpad; K-BIT ADHD; central executive; phonological loop; visuospatial sketchpad; K-BIT

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MDPI and ACS Style

Rodriguez-Martínez, E.I.; Muñoz-Pradas, R.; Arjona, A.; Angulo-Ruiz, B.Y.; Muñoz, V.; Gómez, C.M. Neuropsychological Assessment of the Relationship of Working Memory with K-BIT Matrices and Vocabulary in Normal Development and ADHD Children and Adolescents. Brain Sci. 2023, 13, 1538. https://doi.org/10.3390/brainsci13111538

AMA Style

Rodriguez-Martínez EI, Muñoz-Pradas R, Arjona A, Angulo-Ruiz BY, Muñoz V, Gómez CM. Neuropsychological Assessment of the Relationship of Working Memory with K-BIT Matrices and Vocabulary in Normal Development and ADHD Children and Adolescents. Brain Sciences. 2023; 13(11):1538. https://doi.org/10.3390/brainsci13111538

Chicago/Turabian Style

Rodriguez-Martínez, Elena I., Raquel Muñoz-Pradas, Antonio Arjona, Brenda Y. Angulo-Ruiz, Vanesa Muñoz, and Carlos M. Gómez. 2023. "Neuropsychological Assessment of the Relationship of Working Memory with K-BIT Matrices and Vocabulary in Normal Development and ADHD Children and Adolescents" Brain Sciences 13, no. 11: 1538. https://doi.org/10.3390/brainsci13111538

APA Style

Rodriguez-Martínez, E. I., Muñoz-Pradas, R., Arjona, A., Angulo-Ruiz, B. Y., Muñoz, V., & Gómez, C. M. (2023). Neuropsychological Assessment of the Relationship of Working Memory with K-BIT Matrices and Vocabulary in Normal Development and ADHD Children and Adolescents. Brain Sciences, 13(11), 1538. https://doi.org/10.3390/brainsci13111538

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