References
- 1Adam, K. C. S., Vogel, E. K., & Awh, E. (2017). Clear evidence for item limits in visual working memory. Cognitive Psychology, 97, 79–97. DOI: 10.1016/j.cogpsych.2017.07.001
- 2Arnicane, A., Oberauer, K., & Souza, A. S. (2021). Validity of attention self-reports in younger and older adults. Cognition, 206,
104482 . DOI: 10.1016/j.cognition.2020.104482 - 3Atkinson, R. C., Herrmann, D. J., & Wescourt, K. T. (1974).
Search processes in recognition memory . In R. L. Solso (Ed.), Theories in cognitive psychology: The Loyola symposium (pp. 101–146). Potomac: Erlbaum. - 4Bae, G. Y., Olkkonen, M., Allred, S. R., & Flombaum, J. I. (2015). Why some colors appear more memorable than others: A model combining categories and particulars in color working memory. Journal of Experimental Psychology: General, 144, 744–763. DOI: 10.1037/xge0000076
- 5Bakeman, R., & McArthur, D. (1996). Picturing repeated measures: Comments on Loftus, Morrison, and others. Behavioral Research Methods, Instruments, & Computers, 28, 584–589. DOI: 10.3758/BF03200546
- 6Bartsch, L. M., & Shepherdson, P. (2022). Freeing capacity in working memory (WM) through the use of long-term memory (LTM) representations. Journal of Experimental Psychology: Learning, Memory, and Cognition, 48(4), 465–482. DOI: 10.1037/xlm0001024
- 7Bartsch, L. M., & Oberauer, K. (2023). The contribution of episodic long-term memory to working memory for bindings. Cognition, 231,
105330 . DOI: 10.1016/j.cognition.2022.105330 - 8Beaudry, O., Neath, I., Surprenant, A. M., & Tehan, G. (2014). The focus of attention is similar to other memory systems rather than uniquely different. Frontiers in Human Neuroscience,
8 . DOI: 10.3389/fnhum.2014.00056 - 9Buehner, M., Krumm, S., & Pick, M. (2005). Reasoning = working memory ≠ attention. Intelligence, 33, 251–272. DOI: 10.1016/j.intell.2005.01.002
- 10Bunting, M. F. (2006). Proactive interference and item similarity in working memory. Journal of Experimental Psychology: Learning, Memory & Cognition, 32, 183–196. DOI: 10.1037/0278-7393.32.2.183
- 11Bürkner, P.-C. (2017). brms: An R package for Bayesian multilevel models using Stan. Journal of Statistical Software, 80, 1–28. DOI: 10.18637/jss.v080.i01
- 12Cowan, N. (2005). Working memory capacity. New York: Psychology Press.
- 13Cowan, N. (2019). Short-term memory based on activated long-term memory: A review in response to Norris (2017). Psychological Bulletin, 145(8), 822–847. DOI: 10.1037/bul0000199
- 14Craik, F. I. M., & Birtwistle, J. (1971). Proactive inhibition in free recall. Journal of Experimental Psychology, 91, 120–123. DOI: 10.1037/h0031835
- 15Devereux, B. J., Tyler, L. K., Geertzen, J., & Randall, B. (2014). The Centre for Speech, Language and the Brain (CSLB) concept property norms. Behavior Research Methods, 46(4), 1119–1127. DOI: 10.3758/s13428-013-0420-4
- 16Farrell, S., & Lewandowsky, S. (2004). Modelling transposition latencies: Constraints for theories of serial order memory. Journal of Memory and Language, 51, 115–135. DOI: 10.1016/j.jml.2004.03.007
- 17Fischer-Baum, S., & McCloskey, M. (2015). Representation of item position in immediate serial recall: evidence from intrusion errors. Journal of Experimental Psychology: Learning, Memory, and Cognition, 41, 1426–1446. DOI: 10.1037/xlm0000102
- 18Foster, J. J., Vogel, E. K., & Awh, E. (2019). Working memory as persistent neural activity. In M. J. Kahana & A. D. Wagner (Eds.), Oxford Handbook of Human Memory. DOI: 10.31234/osf.io/jh6e3
- 19Gronau, Q. F., Singmann, H., & Wagenmakers, E. J. (2018). bridgesampling: An R package for estimating normalizing constants. arXiv,
https://arxiv.org/pdf/1710.08162.pdf . DOI: 10.31222/osf.io/v94h6 - 20Haaf, J. M., & Rouder, J. N. (2019). Some do and some don’t? Accounting for variability of individual difference structures. Psychonomic Bulletin & Review, 26, 772–789. DOI: 10.3758/s13423-018-1522-x
- 21Halford, G. S., Cowan, N., & Andrews, G. (2007). Separating cognitive capacity from knowledge: a new hypothesis. Trends in Cognitive Sciences, 11, 236–242. DOI: 10.1016/j.tics.2007.04.001
- 22Hebb, D. O. (1961).
Distinctive features of learning in the higher animal . In J. F. Delafresnaye (Ed.), Brain mechanisms and learning (pp. 37–46). Oxford: Blackwell. - 23Jones, T., & Oberauer, K. (2013). Serial-position effects for items and relations in short-term memory. Memory, 21, 347–365. DOI: 10.1080/09658211.2012.726629
- 24Kane, M. J., Hambrick, D. Z., Tuholski, S. W., Wilhelm, O., Payne, T. W., & Engle, R. W. (2004). The generality of working-memory capacity: A latent-variable approach to verbal and visuo-spatial memory span and reasoning. Journal of Experimental Psychology: General, 133, 189–217. DOI: 10.1037/0096-3445.133.2.189
- 25Krasnoff, J., & Oberauer, K. (2022). When do we know that we do not know? An examination of metacognitive processes in visual working memory. Journal of Experimental Psychology: Learning, Memory, and Cognition. DOI: 10.1037/xlm0001211
- 26Kyllonen, P. C., & Christal, R. E. (1990). Reasoning ability is (little more than) working-memory capacity?! Intelligence, 14, 389–433. DOI: 10.1016/S0160-2896(05)80012-1
- 27Lewandowsky, S., & Farrell, S. (2008).
Short-term memory: new data and a model . In B. H. Ross (Ed.), The Psychology of Learning and Motivation (Vol. 49, pp. 1–48). London, UK: Elsevier. DOI: 10.1016/S0079-7421(08)00001-7 - 28Luck, S. J., & Vogel, E. K. (1997). The capacity of visual working memory for features and conjunctions. Nature, 390, 279–281. DOI: 10.1038/36846
- 29Monsell, S. (1978). Recency, immediate recognition memory, and reaction time. Cognitive Psychology, 10, 465–501. DOI: 10.1016/0010-0285(78)90008-7
- 30Nairne, J. S. (2002). Remembering over the short-term: The case against the standard model. Annual Review of Psychology, 53, 53–81. DOI: 10.1146/annurev.psych.53.100901.135131
- 31Norris, D. (2017). Short-term memory and long-term memory are still different. Psychological Bulletin, 143, 992–1009. DOI: 10.1037/bul0000108
- 32Oberauer, K. (2009). Design for a working memory. Psychology of Learning and Motivation: Advances in Research and Theory, 51, 45–100. Retrieved from <Go to ISI>://000271014500002. DOI: 10.1016/S0079-7421(09)51002-X
- 33Oberauer, K. (2019). Working memory capacity limits memory for bindings. Journal of Cognition,
2 . DOI: 10.5334/joc.86 - 34Oberauer, K. (2022a). The Importance of Random Slopes in Mixed Models for Bayesian Hypothesis Testing. Psychological Science, 33(4), 648–665. DOI: 10.1177/09567976211046884
- 35Oberauer, K. (2022b). When does working memory get better with longer time? Journal of Experimental Psychology: Learning, Memory, and Cognition. DOI: 10.1037/xlm0001199
- 36Oberauer, K., & Awh, E. (2022). Is there an activity-silent working memory? Journal of Cognitive Neuroscience, 34(12), 2360–2374. DOI: 10.1162/jocn_a_01917
- 37Oberauer, K., Awh, E., & Sutterer, D. W. (2017). The role of long-term memory in a test of visual working memory: proactive facilitation but no proactive interference. Journal of Experimental Psychology: Learning, Memory and Cognition, 43, 1–22. DOI: 10.1037/xlm0000302
- 38Oberauer, K., & Greve, W. (2021). Intentional remembering and intentional forgetting in working and long-term memory. Journal of Experimental Psychology: General. DOI: 10.1037/xge0001106
- 39Oberauer, K., & Kliegl, R. (2001). Beyond resources: Formal models of complexity effects and age differences in working memory. European Journal of Cognitive Psychology, 13(1–2), 187–215. Retrieved from <Go to ISI>://000168274800010. DOI: 10.1080/09541440042000278
- 40Oberauer, K., Lewandowsky, S., Farrell, S., Jarrold, C., & Greaves, M. (2012). Modeling working memory: An interference model of complex span. Psychonomic Bulletin & Review, 19, 779–819. DOI: 10.3758/s13423-012-0272-4
- 41Oberauer, K., Süß, H.-M., Wilhelm, O., & Sander, N. (2007).
Individual differences in working memory capacity and reasoning ability . In A. R. A. Conway, C. Jarrold, M. J. Kane, A. Miyake, & J. N. Towse (Eds.), Variation in working memory (pp. 49–75). New York: Oxford University Press. DOI: 10.1093/acprof:oso/9780195168648.003.0003 - 42Osth, A. F., & Dennis, S. (2015). Prior-list intrusions in serial recall are positional. Journal of Experimental Psychology: Learning, Memory and Cognition, 41, 1893–1901. DOI: 10.1037/xlm0000110
- 43Page, M. P. A., Cumming, N., Norris, D., McNeil, A. M., & Hitch, G. J. (2013). Repetition-spacing and item-overlap effects in the Hebb repetition task. Journal of Memory and Language, 69, 506–526. DOI: 10.1016/j.jml.2013.07.001
- 44Postman, L., & Keppel, G. (1977). Conditions of cumulative proactive inhibition. Journal of Experimental Psychology: General, 106(4), 376–403. DOI: 10.1037/0096-3445.106.4.376
- 45R_Core_Team. (2020).
R: A language and environment for statistical computing (Version 3.6.2) . Vienna, Austria: R Foundation for Statistical Computing. Retrieved from URL:http://www.R-project.org - 46Rademaker, R. L., Tredway, C. H., & Tong, F. (2012). Introspective judgments predict the precision and likelihood of successful maintenance of visual working memory. Journal of Vision, 12, 1–13. DOI: 10.1167/12.13.21
- 47Ralph, A., Walters, J. N., Stevens, A., Fitzgerald, K. J., Tehan, G., Surprenant, A. M., … Turcotte, J. (2011). Immunity to proactive interference is not a property of the focus of attention in working memory. Memory & Cognition, 39, 217–230. DOI: 10.3758/s13421-010-0030-7
- 48Rock, I., & Gutman, D. (1981). The effect of inattention on form perception. Journal of Experimental Psychology: Human Perception and Performance, 7(2), 275–285. DOI: 10.1037/0096-1523.7.2.275
- 49Rouder, J. N. (2014). Optional stopping: No problem for Bayesians. Psychonomic Bulletin & Review, 21, 301–308. DOI: 10.3758/s13423-014-0595-4
- 50Sanders, A. F., & Willemsen, E. M. (1978). Proactive interference in immediate serial recall. Acta Psychologica, 42, 29–38. DOI: 10.1016/0001-6918(78)90041-0
- 51Souza, A. S., & Oberauer, K. (2022). Promoting visual long-term memories: When do we learn from repetitions of visuospatial arrays? Journal of Experimental Psychology: General, 151, 3114–3133. DOI: 10.1037/xge0001236
- 52Süß, H.-M., Oberauer, K., Wittmann, W. W., Wilhelm, O., & Schulze, R. (2002). Working memory capacity explains reasoning ability – and a little bit more. Intelligence, 30, 261–288. DOI: 10.1016/S0160-2896(01)00100-3
- 53Tehan, G., & Turcotte, J. (2002). Word length effects are not due to proactive interference. Memory, 10(2), 139–149. DOI: 10.1080/09658210143000272
- 54Watkins, O. C., & Watkins, M. J. (1975). Buildup of proactive inhibition as a cue-overload effect. Journal of Experimental Psychology: Human Learning and Memory, 104, 442–452. DOI: 10.1037/0278-7393.1.4.442
- 55Wickens, D. D. (1970). Encoding categories of words: an empirical approach to meaning. Psychological Review, 77, 1–15. DOI: 10.1037/h0028569
- 56Wickens, D. D., Born, D. G., & Allen, C. K. (1963). Proactive inhibition and item similarity in short-term memory. Journal of Verbal Learning & Verbal Behavior, 2, 440–445. DOI: 10.1016/S0022-5371(63)80045-6
- 57Wilhelm, O., Hildebrandt, A., & Oberauer, K. (2013). What is working memory capacity, and how can we measure it? Frontiers in Psychology, 4. DOI: 10.3389/fpsyg.2013.00433
