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A process-based view of memory

Published online by Cambridge University Press:  26 February 2009

Teresa A. Blaxton
Affiliation:
National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD 20892

Abstract

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Type
Dialogue Section
Copyright
Copyright © The International Neuropsychological Society 1995

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References

Bassili, J.N., Smith, M.C. & MacLeod, C.M. (1989). Auditory and visual word stem completion: Separating data-driven and conceptually -driven processes. Quarterly Journal of Experimental Psychology, 41A, 439445.CrossRefGoogle Scholar
Blaxton, T.A. (1989). Investigating dissociations among memory measures: Support for a transfer appropriate processing framework. Journal of Experimental Psychology: Learning, Memory and Cognition, 15, 657668.Google Scholar
Blaxton, T.A. (1992). Dissociations among memory measures in memory-impaired subjects: Evidence for a processing account of memory. Memory and Cognition, 20, 549562.CrossRefGoogle ScholarPubMed
Clarke, R. & Morton, J. (1983). Cross-modality facilitation in tachistoscopic word recognition. Quarterly Journal of Experimental Psychology, 35A, 7996.CrossRefGoogle Scholar
Cohen, N.J. & Squire, L.R. (1980). Preserved learning and retention of pattern analyzing skill in amnesia: Dissociation of knowing how and knowing that. Science, 210, 207209.CrossRefGoogle ScholarPubMed
Gabrieli, J.D.E., Keane, M.M., Stanger, B.Z., Kjelgaard, M.M., Corkin, S. & Growdon, J.H. (1995). Dissociations among perceptual-structural, lexical-semantic, and event-fact memory subsystems in global amnesia, Alzheimer's disease, and normal subjects. Cortex (in press).Google Scholar
Gazzaniga, M.S. (1989). Organization of the human brain. Science, 245, 947952.CrossRefGoogle ScholarPubMed
Hamann, S.B. (1990). Levels of processing effects in conceptually driven implicit tasks. Journal of Experimental Psychology: Learning, Memory and Cognition, 16, 970977.Google Scholar
Jacoby, L.L. (1983). Remembering the data: Analyzing interactive processes in reading. Journal of Verbal Learning and Verbal Behavior, 22, 485508.CrossRefGoogle Scholar
Java, R.I. & Gardiner, J.M. (1991). Priming and aging: Further evidence of preserved memory function. American Journal of Psychology, 104, 89100.CrossRefGoogle ScholarPubMed
Keane, M.M., Gabrieli, J.D.E., Monti, L.A., Cantor, J.M. & Noland, J.S. (1993). Amnesic patients show normal priming and a normal depth-of-processing effect in a conceptually driven implicit task. Society for Neuroscience Abstracts, 19, 1079.Google Scholar
Masson, M.E.J. & MacLeod, C.M. (1992). Reenacting the route to interpretation: Enhanced perceptual identification without prior perception. Journal of Experimental Psychology: General, 121, 145176.CrossRefGoogle Scholar
McClelland, A.G.R. & Pring, L. (1991). An investigation of cross-modality effects in implicit and explicit memory. Quarterly Journal of Experimental Psychology, 43A, 1933.CrossRefGoogle Scholar
Morris, C.D., Bransford, J.P. & Franks, J.J. (1977). Levels of processing versus transfer appropriate processing. Journal of Verbal Learning and Verbal Behavior, 16, 519533.CrossRefGoogle Scholar
Roediger, H.L., Guynn, M.J. & Jones, T.C. (1994). Implicit memory: A tutorial review. In d'Ydewelle, G., Eelen, P., and Bertelson, P. (Eds.), International Perspectives on Psychological Science: The State of the Art (Vol. 2, pp. 6794). Hove, England: Lawrence Erlbaum.Google Scholar
Roediger, H.L. & McDermott, K.B. (1993). Implicit memory in normal human subjects. In Grafman, J. and Boller, F. (Eds.), Handbook of Neuropsychology (Vol. 8, pp. 63–131). Amsterdam: Elsevier.Google Scholar
Schacter, D.L. (1990). Perceptual representation systems and implicit memory: Toward a resolution of the multiple memory systems debate. In Diamond, A. (Ed.), Development and Neural Bases of Higher Cognition (pp. 543571). New York: Annals of the New York Academy of Sciences.Google Scholar
Sherry, D.F. & Schacter, D.L. (1987). The evolution of multiple memory systems. Psychological Review, 94, 439454.CrossRefGoogle Scholar
Smith, E.S. & Branscombe, N. (1988). Category accessibility as implicit memory. Journal of Experimental Social Psychology, 24, 490504.CrossRefGoogle Scholar
Srinivas, K. & Roediger, H.L. (1990). Classifying implicit memory tests: Category association and anagram solution. Journal of Memory and Language, 29, 389412.CrossRefGoogle Scholar
Tajika, H. & Neuman, E. (1989). Effects of memory test instructions on dissociations between explicit and implicit measures of retention. Psychologia—An International Journal of Psychology in the Orient, 35, 7683.Google Scholar
Tulving, E. & Schacter, D.L. (1990). Priming and human memory systems. Science, 247, 301305.CrossRefGoogle ScholarPubMed
Weldon, M.S. (1991). Mechanisms underlying priming on perceptual tasks. Journal of Experimental Psychology: Learning, Memory and Cognition, 17, 526541.Google Scholar
Winnick, W.A. & Daniel, S.A. (1970). Two kinds of response priming in tachistoscopic word recognition. Journal of Experimental Psychology, 84, 7481.CrossRefGoogle Scholar