Lomonosov Psychology Journal
ISSN 0137-0936
eISSN 2309-9852
En Ru
ISSN 0137-0936
eISSN 2309-9852

Neuropsychological Analysis of the Structure of Ravens’s Coloured Progressive Matrices Test in Children 6–9 Years Old

Background. Raven’s Coloured Progressive Matrices (RCPMs) is a widely used instrument as one of psychometric measures of general intelligence in children. However, according to some researchers, the RCPM is heterogeneous and individual tasks may be associated with the assessment of various cognitive components.

Objective. This study is aimed to examine the influence of functions of visual and visuospatial processing, and executive functions on the productivity of RCPMs.

Study Participants. A total of 297 children from 6 to 9 years old participated in the study. Of these, 98 were preschoolers, 87 first graders and 112 second graders. A total of 152 boys and 145 girls participated in the study. All children had no diagnosed developmental and neurological disorders.

Methods. All the children accomplished the computerized version of RCPM in the Rosanova’s modification. They also passed a neuropsychological assessment adapted for 6–9-year-old children.

Results. Age differences were shown. They were the greatest when comparing preschoolers and first-grader. The differences between first-graders and secondgraders were less prominent. Hierarchical regression analysis showed that three parts of the matrices are related to separate groups of functions to different degrees. The first part of the test is most related to the state of visual information processing functions; the second part refers to the state of visual-spatial information processing and executive functions; and the third part to a greater extent deals with the state of executive functions.

Conclusion. The results indicate the heterogeneity of tasks in RCPM and the promise of a more detailed analysis of the structure of the technique, including the use of a neuropsychological approach.

References

Akhutina, T.V., Korneev, A.A., Matveeva, E.Yu. (2016). Methods of 6–9 years old children neuropsychological investigation. Moscow: V. Sekachev. (In Russ.).

Arrigoni, G., De Renzi, E. (1964). Constructional apraxia and hemispheric locus of lesion. Cortex, 1(2), 170–197.

Asano, D., Takeda, M., Nobusako, S., Morioka, S. (2023). Error analysis of Raven’s Coloured Progressive Matrices in children and adolescents with cerebral palsy. Journal of Intellectual Disability Research, 67(7), 655–667.

Carlson, J.S., Jensen, C.M. (1980). The factorial structure of the Raven Coloured Progressive Matrices test: A reanalysis. Educational and Psychological Measurement, 40(4), 1111–1116.

Carvalho, I.P., Costa, A., Silva, S., Moreira, B., Almeida, A., Moreira-Rosário, A., Calhau, C. (2020). Children’s performance on Raven’s Coloured progressive matrices in Portugal: The Flynn effect. Intelligence, (82), 101485.

Cipolotti, L., Molenberghs, P., Dominguez, J., Smith, N., Smirni, D., Xu, T., Shallice, T., Chan, E. (2020). Fluency and rule breaking behaviour in the frontal cortex. Neuropsychologia, (137), Article 107308. https://doi.org/10.1016/j.neuropsychologia.2019.107308

Costa, L.D. (1976). Interset variability on the Raven coloured progressive matrices as an indicator of specific ability deficit in brain-lesioned patients. Cortex, 12(1), 31–40.

Denes, F., Semenza, C., Stoppa, E., Gradenigo, G. (1978). Selective improvement by unilateral brain-damaged patients on Raven coloured progressive matrices. Neuropsychologia, 16(6), 749–752.

Fernandes, T., Leite, I., Kolinsky, R. (2016). Into the looking glass: Literacy acquisition and mirror invariance in preschool and first‐grade children. Child Development, 87(6), 2008–2025. https://doi.org/10.1111/cdev.12550

Gray, J.R., Thompson, P.M. (2004). Neurobiology of intelligence: science and ethics. Nature Reviews Neuroscience, 5(6), 471–482. https://doi.org/10.1038/nrn1405

Kazem, A.M., Alzubiadi, A.S., Alkharusi, H.A., Yousif, Y.H., Alsarmi, A.M., Al-Bulushi, S.S., Aljamali, F.A., Al-Mashhdany, S., Al-Busaidi, O.B., Al-Fori, S.M., AlBahrani, W.A., Alshammary, B.M. (2009). A Normative Study of the Raven Coloured Progressive Matrices Test for Omani Children Aged 5-11 Years. Jurnal Pendidikan Malaysia (Malaysian Journal of Education), 34(1), 37–51.

Korneev, A., Akhutina, T., Gusev, A., Kremlev, A., Matveeva, E. (2018). Computerized Neuropsychological Assessment in 6–9 Years-old Children. KnE Life Sciences, 4(8), 495–506. https://doi.org/10.18502/kls.v4i8.3307

Kovyazina, M., Oschepkova, E., Airapetyan, Z., Ivanova, M., Dedyukina, M., Gavrilova, M. (2021). Executive Functions’ Impact on Vocabulary and Verbal Fluency among Mono- and Bilingual Preschool-Aged Children. Psychology in Russia: State of the Art, 14(4), 65–77. https://doi.org/10.11621/pir.2021.0405

Kroger, J.K., Sabb, F.W., Fales, C.L., Bookheimer, S.Y., Cohen, M.S., Holyoak, K.J. (2002). Recruitment of anterior dorsolateral prefrontal cortex in human reasoning: a parametric study of relational complexity. Cerebral cortex, 12(5), 477–485. https://doi.org/10.1093/cercor/12.5.477

Lee, K.H., Choi, Y.Y., Gray, J.R., Cho, S.H., Chae, J.H., Lee, S., Kim, K. (2006). Neural correlates of superior intelligence: stronger recruitment of posterior parietal cortex. Neuroimage, 29(2), 578–586.

Levchenko, I.Y., Zabramnaya, S.D., Dobrovolskaya, T.A. (2005). Psychological and pedagogical diagnostics: textbook for students of higher pedagogical educational institutions, 2nd ed. Moscow: Publishing Center “Academy”. (In Russ.).

Lezak, M.D., Howieson, D.B., Loring, D.W., Fischer, J.S. (2004). Neuropsychological Assessment. Oxford: Oxford University Press.

Malloy-Diniz, L.F., Cardoso-Martins, C., Nassif, E.P., Levy, A.M., Leite, W.B., Fuentes, D. (2008). Planning abilities of children aged 4 years and 9 months to 8 1/2 years: Effects of age, fluid intelligence and school type on performance in the Tower of London test. Dementia & Neuropsychologia, 2(1), 26–30. https://doi.org/10.1590/ S1980-57642009DN20100006

Mukhordova, O.E., Shreiber, T.V. (2011). Raven’s progressive matrices: methodical recommendations. Izhevsk: Udmurt University. (In Russ.).

Müller, R (1970). Eine kritische empirische Untersuchung des “Draw-a-man-test” und der “Coloured Progressive Matrices”. Diagnostica, (16), 138–147.

Muniz, M., Gomes, C.M.A., Pasian, S.R. (2016). Factor structure of Raven’s coloured progressive matrices. Psico-USF, (21), 259–272.

Petretto, D.R., Grassi, P., Masala, C., Nicotra, E.F. (2021). Pattern of errors in Raven’s Colored Progressive Matrices and their use in the clinical assessment of intelligence. In: 2021 IEEE International Symposium on Medical Measurements and Applications (MeMeA), 1–6.

Pind, J., Gunnarsdóttir, E K., Jóhannesson, H.S. (2003). Raven’s Standard Progressive Matrices: New school age norms and a study of the test’s validity. Personality and Individual Differences, 34(3), 375–386. https://doi.org/10.1016/S0191-8869(02)00058-2

Prabhakaran, V., Smith, J.A., Desmond, J.E., Glover, G.H., Gabrieli, J.D. (1997). Neural substrates of fluid reasoning: an fMRI study of neocortical activation during performance of the Raven’s Progressive Matrices Test. Cognitive psychology, 33(1), 43–63. https://doi.org/10.1006/cogp.1997.0659

Pueyo, R., Junque, C., Vendrell, P., Narberhaus, A., Segarra, D. (2008). Raven’s Coloured Progressive Matrices as a measure of cognitive functioning in Cerebral Palsy. Journal of Intellectual Disability Research, 52(5), 437–445. https://doi.org/10.1111/j.1365-2788.2008.01045.x

Raven, J.C. (2000). The Raven’s progressive matrices: change and stability over culture and time. Cognitive Psychology, 41(1), 1–48. https://doi.org/10.1006/ cogp.1999.0735

Raven, J.C. (1965). Guide to Using the Colored Progressive Matrices, Sets A. Ab, B. London: H.K. Lewis.

Raven, J.C. (1995). Coloured Progressive Matrices Sets A, Ab, B; Manual Sections 1 & 2. Oxford: Oxford Psychologists Press.

Roca, M., Parr, A., Thompson, R., Woolgar, A., Torralva, T., Antoun, N., Duncan, J. (2010). Executive function and fluid intelligence after frontal lobe lesions. Brain, 133(1), 234–247. https://doi.org/10.1093/brain/awp269

Rozanova, T.V. (1978). Development of memory and thinking of deaf children. Moscow: Pedagogy. (In Russ.).

Semago, N.Y., Semago, M.M. (2005). Theory and practice of assessing the mental development of the child. Preschool and younger school age. St. Petersburg: Rech. (In Russ.).

Semenova, O.A., Koshelcov, D.A., Machinskaya, R.I. (2007). Age Specific Changes of Activity Self Regulation in Preschool Age and Early School Age Children. Kul’turnoIstoricheskaya Psikhologiya (Cultural-Historical Psychology), 3(4), 39–49. (In Russ.).

Smirni, D. (2020). The Raven’s Coloured Progressive Matrices in Healthy Children: A Qualitative Approach. Brain Sciences, 10(11), 11. https://doi.org/10.3390/ brainsci10110877

Smirni, P., Smirni, D. (2022). Current and Potential Cognitive Development in Healthy Children: A New Approach to Raven Coloured Progressive Matrices. Children, 9(4), 446. URL: https://www.mdpi.com/2227-9067/9/4/446 (access date: 12.03.2024). https://doi.org/10.3390/children9040446

Uka, F., Gunzenhauser, C., Larsen, R.A., von Suchodoletz, A. (2019). Exploring a bidirectional model of executive functions and fluid intelligence across early development. Intelligence, (75), 111–121.

Villardita, C. (1985). Raven’s colored progressive matrices and intellectual impairment in patients with focal brain damage. Cortex, 21(4), 627–635.

Winkelmann, W. (1972). Normen für den Mann-Zeichen-Test von Ziler und die Coloured Progressive Matrices von Raven für 5-7 jahrige Kinder. Psychologische Beitrage, (14), 80–94.

Recieved: 10/26/2023

Accepted: 02/14/2024

Published: 04/01/2024

Keywords: preschoolers; primary schoolchildren; neuropsychological assessment; executive functions; visual-spatial information processing; Raven’s test

Available online since: 20.05.2024