Erziehung und Unterricht 2018/3+4
Graß, Raum und Zahl – Zusammenhänge zwischen Raumvorstellung und Arithmetik 339 Erziehung und Unterricht • März/April 3-4|2018 Nuerk, H. C., Wood, G. & Willmes, K. (2005): The universal SNARC effect: the association between num- ber magnitude and space is amodal. Experimental Psychology, 52 , p. 187-194. Nuerk, H.-C., Wood, G. & Willmes, K. (2005b): The universal SNARC effect. The association between number and space is amodal. Experimental Psychology, 52 , p. 187-194. Obersteiner, A., Reiss, K. & Ufer, S. (2013): How training on exact or approximate mental representa- tions of number can enhance first-grade students’ basic number processing and arithmetic skills. Learning and Instruction, 23 , p. 125–135. Patro, K., Nuerk, H. C. & Cress, U. (2015): Does your body count? Embodied influences on the preferred counting direction of preschoolers. Journal of Cognitive Psychology, 27 (4), p. 413-425. Pinhas, M. & Fischer, M. H. (2008): Mental movements without magnitude? A study of spatial biases in symbolic arithmetic. Cognition, 109 (3), p. 408-415. Radatz, H.. & Rickmeyer, K. (1991): Handbuch für den Geometrieunterricht an Grundschulen. Hannover: Schroedel. Raghubar, K. P., Barnes, M. A. & Hecht, S. A. (2010): Working memory and mathematics: A review of de- velopmental, individual difference, and cognitive approaches. Learning and individual differences, 20 (2), p. 110-122. Rasmussen, C. & Bisanz, J. (2005): Representation and working memory in early arithmetic. Journal of experimental child psychology, 91 (2), p. 137-157. Reinert, R. M., Huber, S., Nuerk, H. C. & Moeller, K. (2015a): Multiplication facts and the mental number line: evidence from unbounded number line estimation. Psychological Research, 79 (1), p. 95-103. Reinert, R.M., Huber, S., Nuerk, H.C. & Moeller, K. (2015b): Strategies in unbounded number line estima- tion? Evidence from eye-tracking. Cognitive Processing, 16 (1), p. 359-363. Roggeman, C., Fias, W. & Verguts, T. (2015): Basic number representation and beyond: neuroimaging and computational modelling. In R.C. Kadosh & A. Dowker (Hrsg.), The oxford handbook of numeri- cal cognition. Oxford: Oxford University Press, p. 566-582. Rotzer, S., Loenneker, T., Kucian, K., Martin, E., Klaver, P. & Von Aster, M. (2009): Dysfunctional neural network of spatial working memory contributes to developmental dyscalculia. Neuropsychologia, 47 (13), p. 2859-2865. Siegler, R. S., & Opfer, J. E. (2003): The development of numerical estimation: evidence for multiple re- presentations of numerical quantity . Psychological Science, 14 , p. 237-243. Siegler, R. S. & Ramani, G.B. (2008). Playing linear numerical board games promotes low-income child- ren’s numerical development. Developmental Science, 11 (5), p. 655-661. Simon, O., Mangin, J.-F., Cohen, L., LeBihan, D. & Dehaene, S. (2002): Topographical layout of hand, eye, calculation and language related areas in the human parietal lobe. Neuron, 33 , p. 475-487. Sokol, S. M., McCloskey, M., Cohen, N. J. & Aliminosa, D. (1991): Cognitive representations and processes in arithmetic: Inferences from the performances of brain-damaged patients. Journal of Experimen- tal Psychology: Learning, Memory & Cognition 17 , p. 355-376. Tronsky, L. N. (2005): Strategy use, the development of automaticity, and working memory involvement in complex multiplication. Memory & Cognition, 33 , p. 927-940. Uttal, D. H., Meadow, N. G., Tipton, E., Hand, L. L., Alden, A. R., Warren, C. & Newcombe, N. S. (2013): The malleability of spatial skills: A meta-analysis of training studies. Psychological Bulletin. Advance on- line publication. doi: 10.1037/a0028446 van Dijck, J.-P., Ginsburg, V., Girelli, L. & Gevers, W. (2015): Linking numbers to space: from the mental number line towards a hybrid account. In R.C. Kadosh & A. Dowker (Hrsg.), The oxford handbook of numerical cognition . Oxford: Oxford University Press, p. 89-105 Walsh, V. (2003): A theory of magnitude: common cortical metrics of time, space and quantity. Trends in cognitive sciences, 7 (11), p. 483-488. Ward, J. (2006): The student’s guide to cognitive neuroscience. New York: Psychology Press. Wechsler, D. (2001): The Wechsler Individual Achievement Test . 2. The Psychological Corporation. (WIAT- II). Winkler, D. (2006): Karteien zum Soma-Würfel. Bauen und Experimentieren mit dem Soma-Würfel. Braunschweig: Westermann.
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