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Memory Mates: A Classroom-Based Intervention to Improve Attention and Working Memory

Published online by Cambridge University Press:  27 September 2013

Nash Davis
Affiliation:
Department of Education and Communities, Sydney, New South Wales, Australia
Linda Sheldon
Affiliation:
Department of Education and Communities, Sydney, New South Wales, Australia
Susan Colmar*
Affiliation:
Faculty of Education and Social Work, The University of Sydney, Sydney, New South Wales, Australia
*
address for correspondence: Susan Colmar, Faculty of Education and Social Work, The University of SydneyNSW 2006, Sydney, Australia. Email: [email protected]
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Abstract

A small-scale research study was undertaken to identify the impact of attention and working memory (WM) strategies for one Year 3 class over four lessons. A selection of eight strategies was embedded in everyday mathematics lessons, and the class teacher was supported to adjust lesson delivery and monitor students experiencing WM overload. Explicit student and teacher instruction was provided to learn how to understand and apply the strategies during lessons. The goals of this research were to increase teacher expertise in teaching strategies to improve WM and to encourage students to practise and self-monitor strategy use. Students’ academic engagement rose to 100% and all students increased their academic achievement outcomes.

Type
Articles
Copyright
Copyright © The Author(s), published by Cambridge University Press on behalf of Australian Academic Press Pty Ltd 2013 

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References

Alloway, T. (2012). Can interactive working memory training improve learning? Journal of Interactive Learning Research, 23, 197207.Google Scholar
Alloway, T.P., & Alloway, R.G. (2010). Investigating the predictive roles of working memory and IQ in academic attainment. Journal of Experimental Child Psychology, 106, 2029.Google Scholar
Alloway, T.P., Doherty-Sneddon, G., & Forbes, L. (2012). Teachers’ perceptions of classroom behaviour and working memory. Educational Research and Review, 7, 138142.Google Scholar
Alloway, T.P., & Gathercole, S.E. (2006). How does working memory work in the classroom? Educational Research and Reviews, 1, 134139.Google Scholar
Alloway, T.P., Gathercole, S.E., Adams, A.M., Willis, C., Eaglen, R., & Lamont, E. (2005). Working memory and phonological awareness as predictors of progress towards early learning goals at school entry. British Journal of Developmental Psychology, 23, 417426.Google Scholar
Alloway, T.P., Gathercole, S.E., & Kirkwood, H. (2008). Working Memory Rating Scale. London: PearsonGoogle Scholar
Alloway, T.P., Gathercole, S.E., Kirkwood, H., & Elliott, J. (2009). The cognitive and behavioural characteristics of children with low working memory. Child Development, 80 (2), 606621.Google Scholar
Andersson, U. (2008). Working memory as a predictor of written arithmetical skills in children: The importance of central executive functions. British Journal of Educational Psychology, 78, 181203.Google Scholar
Aronen, E.T., Vuontela, V., Steenari, M-R., Salmi, J., & Carlson, S. (2005). Working memory, psychiatric symptoms, and academic performance at school. Neurobiology of Learning and Memory, 83, 3342.Google Scholar
Baddeley, A. (2003). Working memory and language: An overview. Journal of Communication Disorders, 36, 189208.Google Scholar
Baddeley, A.D., & Hitch, G.J. (1974). Working memory. In Bower, G.A. (Ed.), Recent advances in learning and motivation (pp. 4790). New York: Academic Press.Google Scholar
Davis, N.Sheldon, L., & Colmar, S. (2013, in press). Memory Mates: A classroom-based intervention to improve attention and working memory. Applied Practices in The Australian Journal of Guidance and Counselling, 23Google Scholar
Elliot, J.G., Gathercole, S.E., Alloway, T.P., Holmes, J., & Kirkwood, H. (2010) An evaluation of a classroom-based intervention to help overcome working memory difficulties and improve long-term academic achievement. Journal of Cognitive Education and Psychology, 9, 227250.CrossRefGoogle Scholar
Gathercole, S.E., & Alloway, T.P. (2008). Understanding working memory: A classroom guide. London: Harcourt Assessment.Google Scholar
Gathercole, S.E., Alloway, T.P., Willis, C., & Adams, A.M. (2006). Working memory in children with reading disabilities. Journal of Experimental Child Psychology, 93, 265281.Google Scholar
Gathercole, S.E., Lamont, E., & Alloway, T.P. (2006). Working memory in the classroom. In Pickering, S. & Phye, G. (Eds.), Working memory and education (pp. 219240). San Diego, CA: Academic Press.CrossRefGoogle Scholar
Geary, D.C., Hoard, M.K., & Hamson, C.O. (1999). Numerical and arithmetical cognition: Patterns of functions and deficits in children at risk for a mathematical disability. Journal of Experimental Child Psychology, 74, 213239.Google Scholar
Glynn, E.L., Thomas, J.D., & Wotherspoon, A.T. (1978). Applied psychology in the Mangere Guidance Unit: Implementing behavioural programmes in the school. The Exceptional Child, 25, 115126.Google Scholar
Greenwood, C.R., Horton, B.T., & Utley, C.A. (2002). Academic engagement: Current perspectives on research and practice. School Psychology Review, 31, 828–349.Google Scholar
Hopkins, S.L., & Lawson, M.J. (2006). Mathematical learning difficulties: The influence of working memory limitations on simple addition performance. In Mitel, A.V. (Ed.), Trends in educational psychology (pp. 73105). New York: Nova Science Publishers.Google Scholar
Klingberg, T., Fernell, E., Olesen, P.J., Johnson, M., Gustafsson, P., Dahlstrom, K., . . . Westerberg, H. (2005). Computerised training of working memory in children with ADHD —A randomised, controlled study. Journal of the American Academy of Child and Adolescent Psychiatry, 44, 177186.Google Scholar
Maehler, C., & Schuchardt, K. (2011). Working memory in children with learning disabilities: Rethinking the criterion of discrepancy. International Journal of Disability, Development and Education, 58, 517.Google Scholar
Marks, H.M. (2000). Student engagement in instructional activity: Patterns in the elementary, middle, and high school years. American Educational Research Journal, 37, 153184.Google Scholar
Roberts, G., Quach, J., Gold, L., Anderson, P., Rickards, F., Mensah, F., Ainley, J., Gathercole, S., & Wake, M. (2011). Can improving working memory prevent academic difficulties? A school based randomised controlled trial. BMC Pediatrics, 11, 19.Google Scholar
Schuchardt, K., Maehler, C., & Hasselhorn, M. (2008). Working memory deficits in children with different learning disabilities. Journal of Learning Disabilities, 41, 514523.Google Scholar
St Clair-Thompson, H.L. (2011). Executive functions and working memory behaviours in children with poor working memory. Learning and Individual Differences, 21, 409414.Google Scholar
St Clair-Thompson, H., Stevens, R., Hunt, A., & Bolder, E. (2010). Improving children's working memory and classroom performance. Educational Psychology, 30, 203219.Google Scholar
Swanson, H.L. (2011). Working memory, attention, and mathematical problem solving: A longitudinal study of elementary school children. Journal of Educational Psychology, 103, 821837.Google Scholar
Swanson, H.L., & Alloway, T.P. (2012). Working memory, learning, and academic achievement. In Harris, K.R. & Graham, S. (Eds.), APA educational psychology handbook (pp. 327366). Washington, DC: American Psychological Association.Google Scholar
Swanson, H.L., & Beebe-Frankenberger, M. (2004). The relationship between working memory and mathematical problem solving in children at risk and not at risk for math disabilities. Journal of Educational Psychology, 96, 471491.Google Scholar
Swanson, H.L., & Sachse-Lee, C. (2001). Mathematical problem solving and working memory in children with learning disabilities. Journal of Experimental Child Psychology, 79, 294321.Google Scholar
Sweller, J. (2005). Implications of cognitive load theory for multimedia learning. In Mayer, R.E (Ed.), The Cambridge handbook of multimedia learning (pp. 1930). Cambridge, NY: Cambridge University Press.CrossRefGoogle Scholar
Turley-Ames, K.J., & Whitfield, M.M. (2003). Strategy training and working memory task performance. Journal of Memory and Language, 49, 446468.Google Scholar
Wass, S.V., Scerif, G., & Johnson, M.H. (2012). Training attentional control and working memory- Is younger, better? Developmental Review, 32, 360387.Google Scholar
Witt, M. (2011). School based working memory training: Preliminary finding of improvement in children's mathematical performance. Advances in Cognitive Psychology, 7, 715.Google Scholar
Woolley, G. (2010). Developing reading comprehension: Combining visual and verbal cognitive processes. Australian Journal of Language and Literacy, 33, 108125.Google Scholar
Woolley, G.E., & Hay, I. (2004). Using imagery as a strategy to enhance students’ comprehension of read text. In Knight, B.A. & Scott, W. (Eds.), Learning difficulties: Multiple perspectives (pp. 85101). Sydney, Australia: Pearson.Google Scholar