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Regular articles

What can we learn about immediate memory from the development of children's free recall?

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Pages 1871-1894 | Received 28 May 2014, Accepted 27 Nov 2014, Published online: 16 Feb 2015

REFERENCES

  • Atkinson, R. C., & Shiffrin, R. M. (1968). Human memory: A proposed system and its control processes. In K. W. Spence & J. T. Spence (Eds.), The psychology of learning and motivation (pp. 89–195). New York: Academic Press.
  • Baddeley, A. D. (1986). Working memory. Oxford: Oxford University Press.
  • Baddeley, A. D., & Hitch, G. (1974). Working memory. In G. H. Bower (Ed.), The psychology of learning and motivation: Advances in research and theory (pp. 47–89). New York: Academic Press.
  • Bayliss, D. M., Jarrold, C., Gunn, D. M., & Baddeley, A. D. (2003). The complexities of complex span: Explaining individual differences in working memory in children and adults. Journal of Experimental Psychology: General, 132, 71–92. doi:10.1037/0096-3445.132.1.71
  • Bhatarah, P., Ward, G., Smith, J., & Hayes, L. (2009). Examining the relationship between free recall and immediate serial recall: Similar patterns of rehearsal and similar effects of word length, presentation rate, and articulatory suppression. Memory & Cognition, 37, 689–713. doi:10.3758/MC.37.5.689
  • Bjork, R. A., & Whitten, W. B. (1974). Recency-sensitive retrieval processes in long-term free recall. Cognitive Psychology, 6, 173–189. doi:10.1016/0010-0285(74)90009-7
  • Brown, G. D. A., Neath, I., & Chater, N. (2007). A temporal ratio model of memory. Psychological Review, 114, 539–576. doi: 10.1037/0033-295X.114.3.539
  • Bruce, D., & Papay, J. P. (1970). Primacy effect in single-trial free recall. Journal of Verbal Learning and Verbal Behavior, 9, 473–486. doi: 10.1016/S0022-5371(70)80090-1
  • Cohen, M. J. (1997). Children's Memory Scale. San Antonio: Psychological Corporation.
  • Cole, M., Frankel, F., & Sharp, D. (1971). Development of free recall learning in children. Developmental Psychology, 4, 109–123. doi: 10.1037/h0030435
  • Conway, A. R. A., Kane, M. J., Bunting, M. F., Hambrick, D. Z., Wilhelm, O., & Engle, R. W. (2005). Working memory span tasks: A methodological review and user's guide. Psychonomic Bulletin and Review, 12, 769–786. doi: 10.3758/BF03196772
  • Cowan, N. (2001). The magical number 4 in short-term memory: A reconsideration of mental storage capacity. Behavioral and Brain Sciences, 24, 87–114. doi: 10.1017/S0140525X01003922
  • Cowan, N., Elliot, E. M., Saults, J. S., Morey, C., Mattox, S., Hismjatullina, A., & Conway, A. R.A. (2005). On the capacity of attention: Its estimation and its role in working memory and cognitive abilities. Cognitive Psychology, 51, 42–100. doi: 10.1016/j.cogpsych.2004.12.001
  • Cowan, N., Nugent, L. D., Elliot, E. M., & Saults, J. S. (2000). Persistence of memory for ignored lists of digits: Areas of developmental constancy and change. Journal of Experimental Child Psychology, 76, 151–172. doi: 10.1006/jecp.1999.2546
  • Cowan, N., Saults, J. S., Elliott, E. M., & Moreno, M. V. (2002). Deconfounding serial recall. Journal of Memory and Language, 46, 153–177. doi: 10.1006/jmla.2001.2805
  • Craik, F. I., & Birtwistle, J. (1971). Proactive inhibition in free recall. Journal of Experimental Psychology, 91, 120–123. doi: 10.1037/h0031835
  • Crowder, R. G., & Morton, J. (1969). Precategorical acoustic storage (PAS). Perception & Psychophysics, 5, 365–373. doi: 10.3758/BF03210660
  • Cuvo, A. J. (1975). Developmental differences in rehearsal and free recall. Journal of Experimental Child Psychology, 19, 265–278. doi: 10.1016/0022-0965(75)90090-9
  • Dalezman, J. J. (1976). Effects of output order on immediate, delayed, and final recall performance. Journal of Experimental Psychology: Human Learning and Memory, 2, 597–608. doi: 10.1037/0278-7393.2.5.597
  • Davelaar, E. J., Goshen-Gottstein, Y., Ashkenazi, A., Haarmann, H. J., & Usher, M. (2005). The demise of short-term memory revisited: empirical and computational investigations of recency effects. Psychological Review, 112, 3–42. doi: 0.1037/0033-295X.112.1.3
  • De Alwis, D., Myerson, J., Hershey, T., & Hale, S. (2009). Children's higher order cognitive abilities and the development of secondary memory. Psychonomic Bulletin & Review, 16, 925–930. doi: 10.3758/pbr.16.5.925
  • Dempster, F. N. (1981). Memory span: sources of individual and developmental differences. Psychological Bulletin, 89, 63–100. doi: 10.1037/0033-2909.89.1.63
  • Dempster, F. N., & Rohwer, W. D. (1983). Age-differences and modality effects in immediate and final free-recall. Child Development, 54, 30–41. doi: 10.1111/j.1467-8624.1983.tb00330.x
  • De Smedt, B., Janssen, R., Bouwens, K., Verschaffel, L., Boets, B., & Ghesquière, P. (2009). Working memory and individual differences in mathematics achievement: A longitudinal study from first grade to second grade. Journal of Experimental Child Psychology, 103, 186–201. doi: 10.1016/j.jecp.2009.01.004
  • Farrell, S. (2010). Dissociating conditional recency in immediate and delayed free recall: A challenge for unitary models of recency. Journal of Experimental Psychology: Learning, Memory, and Cognition, 36, 324–347. doi: 10.1037/a0018042
  • Farrell, S. (2012). Temporal clustering and sequencing in short-term memory and episodic memory. Psychological Review, 119, 223–271. doi: 10.1037/a0027371
  • Farrell, S., & Lewandowsky, S. (2002). An endogenous distributed model of ordering in serial recall. Psychonomic Bulletin & Review, 9, 59–79. doi: 10.3758/BF03196257
  • Gathercole, S. E. (1999). Cognitive approaches to the development of short-term memory. Trends in Cognitive Sciences, 3, 410–419. doi: 10.1016/S1364-6613(99)01388-1
  • Gibson, B. S., Gondoli, D. M., Flies, A. C., Dobrzenski, B. A., & Unsworth, N. (2009). Application of the dual-component model of working memory to ADHD. Child Neuropsychology, 16, 60–79. doi: 10.1080/09297040903146958
  • Gibson, B. S., Gondoli, D. M., Kronenberger, W. G., Johnson, A. C., Steeger, C. M., & Morrissey, R. A. (2013). Exploration of an adaptive training regimen that can target the secondary memory component of working memory capacity. Memory & Cognition, 41, 726–737. doi: 10.3758/s13421-013-0295-8
  • Grenfell-Essam, R., & Ward, G. (2012). Examining the relationship between free recall and immediate serial recall: The role of list length, strategy use, and test expectancy. Journal of Memory and Language, 67, 106–148. doi: 10.1016/j.jml.2012.04.004
  • Grenfell-Essam, R., Ward, G., & Tan, L. (2013). The role of rehearsal on the output order of immediate free recall of short and long lists. Journal of Experimental Psychology: Learning, Memory, and Cognition, 39, 317–347. doi: 10.1037/a0028974
  • Hall, D., Jarrold, C., Towse, J. N., & Zarandi, A. (2015). The developmental influence of primary memory on working memory and academic achievement. Manuscript submitted for publication.
  • Hasher, L., & Clifton, D. (1974). A developmental study of attribute encoding in free recall. Journal of Experimental Child Psychology, 17, 332–346. doi: 10.1016/0022-0965(74)90077-0
  • Howard, M. W., & Kahana, M. J. (1999). Contextual variability and serial position effects in free recall. Journal of Experimental Psychology: Learning, Memory, and Cognition, 25, 923–941. doi: 10.1037/0278-7393.25.4.923
  • Howard, M. W., & Kahana, M. J. (2002). A distributed representation of temporal context. Journal of Mathematical Psychology, 46, 269–299. doi: 10.1006/jmps.2001.1388
  • Jablonski, E. M. (1974). Free recall in children. Psychological Bulletin, 81, 522–539. doi: 10.1037/h0037012
  • James, W. (1890). The principles of psychology. New York: Holt.
  • Jonides, J., Lewis, R. L., Nee, D. E., Lustig, C. A., Berman, M. G., & Moore, K. S. (2008). The mind and brain of short-term memory. Annual Review of Psychology, 59, 193–224. doi: 10.1146/annurev.psych.59.103006.093615
  • Kahana, M. J. (1996). Associative retrieval processes in free recall. Memory and Cognition, 24, 103–109. doi: 10.3758/bf03197276
  • Kane, M. J., Hambrick, D. Z., & Conway, A. R. A. (2005). Working memory capacity and fluid intelligence are strongly related constructs: comment on Ackerman, Beier, and Boyle (2005). Psychological Bulletin, 131, 66–71. doi: 10.1037/0033-2909.131.1.66
  • Katz, L. (1968). The limited-capacity hypothesis: Effects of sequence length and instructions in free recall. Journal of Verbal Learning and Verbal Behavior, 7, 942–944. doi: 10.1016/S0022-5371(68)80101-X
  • Lehmann, M., & Hasselhorn, M. (2007). Variable memory strategy use in children's adaptive intratask learning behavior: Developmental changes and working memory influences in free recall. Child Development, 78, 1068–1082. doi: 10.1111/j.1467-8624.2007.01053.x
  • McCormack, T., Brown, G. D. A., Vousden, J. I., & Henson, R. N. A. (2000). Children's serial recall errors: implications for theories of short-term memory development. Journal of Experimental Child Psychology, 76, 222–252. doi: 10.1006/jecp.1999.2550
  • McElree, B. (2006). Accessing recent events. The Psychology of Learning and Motivation, 46, 155–200. doi: 10.1016/S0079-7421(06)46005-9
  • Moely, B. E. (1977). Organizational factors in the development of memory. In R. V. Kail Jr. & J. W. Hagen (Eds.), Perspectives on the development of memory and cognition (pp. 203–236). Hillsdale, NJ: Erlbaum.
  • Mogle, J. A., Lovett, B. J., Stawski, R. S., & Sliwinski, M. J. (2008). What's so special about working memory?. An examination of the relationships among working memory, secondary memory, and fluid intelligence. Psychological Science, 19, 1071–1077. doi: 10.1111/j.1467-9280.2008.02202.x
  • Morrison, C. M., Chappell, T. D., & Ellis, A. W. (1997). Age of acquisition norms for a large set of object names and their relation to adult estimates and other variables. Quarterly Journal of Experimental Psychology Section A, 50, 528–559. doi: 10.1080/027249897392017
  • Murdock, B. B. (1962). Direction of recall in short-term memory. Journal of Verbal Learning and Verbal Behaviour, 1, 119–124. doi: 10.1016/S0022-5371(62)80008-5
  • Murdock, B. B., & Okada, R. (1970). Interresponse times in single trial free recall. Journal of Experimental Psychology, 86, 263–267. doi: 10.1037/h0029993. ISSN: 0022–1015
  • Nee, D. E., & Jonides, J. (2011). Dissociable contributions of prefrontal cortex and the hippocampus to short-term memory: Evidence for a 3-state model of memory. Neuroimage, 54, 1540–1548. doi: 10.1016/j.neuroimage.2010.09.002
  • Nevo, E., & Breznitz, Z. (2011). Assessment of working memory components at 6 years of age as predictors of reading achievements a year later. Journal of Experimental Child Psychology, 109, 73–90. doi: 10.1016/j.jecp.2010.09.010
  • Oberauer, K. (2002). Access to information in working memory: Exploring the focus of attention. Journal of Experimental Psychology: Learning, Memory, and Cognition, 28, 411–421. doi: 10.1037/0278-7393.28.3.411
  • Oberauer, K., Schulze, R., Wilhelm, O., & Süß, H.-M. (2005). Working memory and intelligence—their correlation and their relation: comment on Ackerman, Beier, and Boyle (2005). Psychological Bulletin, 131, 61–65. doi: 10.1037/0033-2909.131.1.61
  • Öztekin, I., Davachi, L., & McElree, B. (2010). Are representations in working memory distinct from representations in long-term memory?: Neural evidence in support of a single store. Psychological Science, 21, 1123–1133. doi: 10.1177/0956797610376651
  • Page, M. P. A., & Norris, D. (1998). The primacy model: a new model of immediate serial recall. Psychological Review, 105, 761–781. doi: 10.1037/0033-295X.105.4.761-781
  • Roberts, W. A. (1972). Free recall of word lists varying in length and rate of presentation: A test of total-time hypotheses. Journal of Experimental Psychology, 92, 365–372. doi: 10.1037/h0032278
  • Roediger, H. (1974). Inhibiting effects of recall. Memory & Cognition, 2, 261–269. doi: 10.3758/bf03208993
  • Shelton, J. T., Elliott, E. M., Matthews, R. A., Hill, B. D., & Gouvier, W. D. (2010). The relationships of working memory, secondary memory, and general fluid intelligence: Working memory is special. Journal of Experimental Psychology: Learning, Memory, and Cognition, 36, 813–820. doi: 10.1037/a0019046
  • Snodgrass, J. G., & Vanderwart, M. (1980). A standardized set of 260 pictures: Norms for name agreement, image agreement, familiarity, and visual complexity. Journal of Experimental Psychology: Human Learning and Memory, 6, 174–215. doi: 10.1037/0278-7393.6.2.174
  • Spurgeon, J., Ward, G., & Matthews, W. J. (2014). Examining the relationship between immediate serial recall and immediate free recall: Common effects of phonological loop variables but only limited evidence for the phonological loop. Journal of Experimental Psychology: Learning, Memory, and Cognition, 40, 1110–1141. doi: 10.1037/a0035784
  • Swanson, H. L. (2011). Working memory, attention, and mathematical problem solving: A longitudinal study of elementary school children. Journal of Educational Psychology, 103, 821–837. doi: 10.1037/a0025114
  • Tan, L., & Ward, G. (2007). Output order in immediate serial recall. Memory and Cognition, 35, 1093–1106. doi: 10.3758/BF03193481
  • Thurm, A. T., & Glanzer, M. (1971). Free recall in children: Long-term store vs short-term store. Psychonomic Science, 23, 175–176. doi: 10.3758/BF03336063
  • Tulving, E. (1968). Theoretical issues in free recall. In T. R. Dixon & D. L. Horton (Eds.), Verbal behavior and general behavior theory (pp. 2–36). Englewood Cliffs: Prentice-Hall.
  • Tulving, E., & Colotla, V. A. (1970). Free recall of trilingual lists. Cognitive Psychology, 1, 86–98. doi: 10.1016/0010-0285(70)90006-X
  • Unsworth, N., Brewer, G., & Spillers, G. (2011). Inter- and intra-individual variation in immediate free recall: An examination of serial position functions and recall initiation strategies. Memory, 19, 67–82. doi: 10.1080/09658211.2010.535658
  • Unsworth, N., & Engle, R. W. (2006). Simple and complex memory spans and their relation to fluid abilities: Evidence from list-length effects. Journal of Memory and Language, 54, 68–80. doi: 10.1016/j.jml.2005.06.003
  • Unsworth, N., & Engle, R. W. (2007a). The nature of individual differences in working memory capacity: Active maintenance in primary memory and controlled search in secondary memory. Psychological Review, 114, 104–132. doi: 10.1037/0033-295X.114.1.104
  • Unsworth, N., & Engle, R. W. (2007b). On the division of short-term and working memory: An examination of simple and complex span and their relation to higher order abilities. Psychological Bulletin, 133, 1038–1066. doi: 10.1037/0033-2909.133.6.1038
  • Unsworth, N., Spillers, G. J., & Brewer, G. A. (2010). The contributions of primary and secondary memory to working memory capacity: An individual differences analysis of immediate free recall. Journal of Experimental Psychology: Learning, Memory, and Cognition, 36, 240–247. doi: 10.1037/a0017739
  • Ward, G., Tan, L., & Grenfell-Essam, R. (2010). Examining the relationship between free recall and immediate serial recall: The effects of list length and output order. Journal of Experimental Psychology: Learning, Memory, and Cognition, 36, 1207–1241. doi: 10.1037/a0020122
  • Waugh, N. C., & Norman, D. A. (1965). Primary memory. Psychological Review, 72, 89–104. doi: 10.1037/h0021797