Results for 'reversal learning'

988 found
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  1.  27
    Reversal learning under single stimulus presentation.David Birch, James R. Ison & Sally E. Sperling - 1960 - Journal of Experimental Psychology 60 (1):36.
  2.  9
    Reversal learning in a successive discrimination using intermittent reinforcement.Roger L. Mellgren & John W. P. Ost - 1970 - Journal of Experimental Psychology 84 (1):181.
  3.  20
    Measuring reversal learning: Introducing the Variable Iowa Gambling Task in a study of young and old normals.Stephanie Kovalchik & John Allman - 2006 - Cognition and Emotion 20 (5):714-728.
  4.  10
    Reversal learning in rats as a function of percentage of reinforcement and degree of learning.Albert Erlebacher - 1963 - Journal of Experimental Psychology 66 (1):84.
  5.  13
    Reversal learning as a function of the size of the reward during acquisition and reversal.Howard H. Kendler & Joseph Kimm - 1967 - Journal of Experimental Psychology 73 (1):66.
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  6.  23
    Spatial reversal learning in the lizard Coleonyx variegatus.Patricia M. Kirkish, James L. Fobes & Ann M. Richardson - 1979 - Bulletin of the Psychonomic Society 13 (4):265-267.
    Banded geckos (Coleonyx variegatus) were trained, at the rate of five daily trials, on eight intradimensional spatial shifts to a criterion of 80% correct per reversal. In contrast to several previously reported failures to obtain reversal learning, Coleonyx demonstrated significant improvement on both errors and trials to criterion. Their reversal performance compares favorably with that of birds and mammals and a common index of reversal ability, the mean total error, did not differentiate between taxa.
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  7.  18
    Serial reversal learning in the mallard duck.Michael C. Wells & Philip N. Lehner - 1977 - Bulletin of the Psychonomic Society 10 (3):235-237.
  8.  11
    Spatial reversal learning in rats and gerbils.Maureen A. Carey & Gloria J. Fischer - 1973 - Bulletin of the Psychonomic Society 2 (3):173-174.
  9.  10
    Reversal learning as a function of length of the deprivation schedule and the amount of training.Douglas Hargrave, Frank Wood & Charles L. Richman - 1973 - Bulletin of the Psychonomic Society 1 (1):15-16.
  10.  19
    Food deprivation and discrimination reversal learning by monkeys.Donald R. Meyer - 1951 - Journal of Experimental Psychology 41 (1):10.
  11. Whole-reversal and partial-reversal learning in conditional discriminations are not controlled by reinforcer density.E. Nakagawa - 2002 - In Serge P. Shohov (ed.), Advances in Psychology Research. Nova Science Publishers. pp. 11--115.
     
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  12.  22
    Serial discrimination reversal learning as a repeated-acquisition method to test drug effects.William H. Calhoun & Elizabeth A. Jones - 1979 - Bulletin of the Psychonomic Society 13 (6):375-377.
  13.  20
    T maze reversal learning after several different overtraining procedures.Winfred F. Hill, Norman E. Spear & Keith N. Clayton - 1962 - Journal of Experimental Psychology 64 (5):533.
  14.  9
    Assessment of Metacognition and Reversal Learning in Parkinson’s Disease: Preliminary Results.Carlos Trenado, Matthias Boschheidgen, Julia Rübenach, Karim N’Diaye, Alfons Schnitzler, Luc Mallet & Lars Wojtecki - 2018 - Frontiers in Human Neuroscience 12.
  15.  18
    Serial discrimination reversal learning: Effects of scopolamine.George W. Handley & William H. Calhoun - 1977 - Bulletin of the Psychonomic Society 10 (5):422-424.
  16.  30
    Meta-Analytic Evidence for a Reversal Learning Effect on the Iowa Gambling Task in Older Adults.Rita Pasion, Ana R. Gonçalves, Carina Fernandes, Fernando Ferreira-Santos, Fernando Barbosa & João Marques-Teixeira - 2017 - Frontiers in Psychology 8:298425.
    Iowa Gambling Task (IGT) is one of the most widely used tools to assess economic decision-making. However, the research tradition on aging and the Iowa Gambling Task (IGT) has been mainly focused on the overall performance of older adults in relation to younger or clinical groups, remaining unclear whether older adults are capable of learning along the task. We conducted a meta-analysis to examine older adults’ decision-making on the IGT, to test the effects of aging on reversal (...) (45 studies) and to provide normative data on total and block net scores (55 studies). From the accumulated empirical evidence, we found an average total net score of 7.55 (± 25.9). We also observed a significant reversal learning effect along the blocks of the IGT, indicating that older adults inhibit the prepotent response towards immediately attractive options associated with high losses, in favor of initially less attractive options associated with long-run profit. During block 1, decisions of older adults led to a negative gambling net score, reflecting the expected initial pattern of risk-taking. However, the shift towards more safe options occurred between block 2 (small-to-medium effect size) and blocks 3, 4, 5 (medium-to-large effect size). These main findings highlight that older adults are able to move from the initial uncertainty, when the possible outcomes are unknown, to decisions based on risk, when the outcomes are learned and may be used to guide future adaptive decision-making. (shrink)
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  17.  19
    The effects of differential rewards on discrimination reversal learning by monkeys.Donald R. Meyer - 1951 - Journal of Experimental Psychology 41 (4):268.
  18.  17
    Effects of variable-irrelevant dimensions on the discrimination reversal learning of nursery school children.J. Dennis Nolan & Leah V. Pendarvis - 1970 - Journal of Experimental Psychology 86 (3):428.
  19.  7
    Some determinants of rigidity in discrimination-reversal learning.Arnold H. Buss - 1952 - Journal of Experimental Psychology 44 (3):222.
  20.  13
    Temporal dynamics of the semantic versus affective representations of valence during reversal learning.Orit Heimer, Assaf Kron & Uri Hertz - 2023 - Cognition 236 (C):105423.
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  21. Dopaminergic and serotonergic modulation of two distinct forms of flexible cognitive control: attentional set-shifting and reversal learning.A. C. Roberts - 2008 - In Silvia A. Bunge & Jonathan D. Wallis (eds.), Neuroscience of rule-guided behavior. New York: Oxford University Press. pp. 283--312.
     
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  22.  14
    Changes of Attention during Value-Based Reversal Learning Are Tracked by N2pc and Feedback-Related Negativity.Mariann Oemisch, Marcus R. Watson, Thilo Womelsdorf & Anna Schubö - 2017 - Frontiers in Human Neuroscience 11.
  23.  31
    Fronto-temporal white matter connectivity predicts reversal learning errors.Kylie H. Alm, Tyler Rolheiser, Feroze B. Mohamed & Ingrid R. Olson - 2015 - Frontiers in Human Neuroscience 9.
  24.  18
    Negative emotional outcomes impair older adults’ reversal learning.Kaoru Nashiro, Mara Mather, Marissa A. Gorlick & Lin Nga - 2011 - Cognition and Emotion 25 (6):1014-1028.
  25.  16
    Reward vs extinction in discrimination reversal learning.Ben A. Williams - 1974 - Bulletin of the Psychonomic Society 3 (6):454-456.
  26.  1
    An application of Levine's model for hypothesis behavior to serial reversal learning.Benjamin H. Pubols - 1962 - Psychological Review 69 (3):241-245.
  27.  15
    Long-term memory following serial discrimination reversal learning.William H. Calhoun & George W. Handley - 1973 - Bulletin of the Psychonomic Society 1 (5):354-356.
  28.  14
    Observing others stay or switch – How social prediction errors are integrated into reward reversal learning.Niklas Ihssen, Thomas Mussweiler & David E. J. Linden - 2016 - Cognition 153 (C):19-32.
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  29. The Reverse Hierarchy Theory of Visual Perceptual Learning.Merav Ahissar & Shaul Hochstein - 2004 - Trends in Cognitive Sciences 8 (10):457-464.
    Perceptual learning can be defined as practice-induced improvement in the ability to perform specific perceptual tasks. We previously proposed the Reverse Hierarchy Theory as a unifying concept that links behavioral findings of visual learning with physiological and anatomical data. Essentially, it asserts that learning is a top-down guided process, which begins at high-level areas of the visual system, and when these do not suffice, progresses backwards to the input levels, which have a better signal-to-noise ratio. This simple (...)
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  30.  19
    Discrimination learning as a function of reversal and nonreversal shifts.Roger T. Kelleher - 1956 - Journal of Experimental Psychology 51 (6):379.
  31.  17
    Learning in reverse: Eight-month-old infants track backward transitional probabilities.Bruna Pelucchi, Jessica F. Hay & Jenny R. Saffran - 2009 - Cognition 113 (2):244-247.
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  32.  20
    Reversal and non-reversal shifts in discrimination learning in retardates.Betty House & David Zeaman - 1962 - Journal of Experimental Psychology 63 (5):444.
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  33. The Reversibility of Teacher and Student: Teaching/Learning Intersectionality and Activism Amidst the LGBTQ Protest.Jennifer McWeeny - 2011 - American Philosophical Association Newsletter on Lesbian, Gay, Bisexual, and Transgender Issues 10 (2):5-12.
  34.  19
    Reversal and nonreversal shift learning in normal children and retardates of comparable mental age.Barbara Sanders, Leonard E. Ross & Laird W. Heal - 1965 - Journal of Experimental Psychology 69 (1):84.
  35. Expertise reversal in multimedia learning: Subjective load ratings and viewing behavior as cognitive process indicators.Gabriele Cierniak, Katharina Scheiter & Peter Gerjets - 2009 - In N. A. Taatgen & H. van Rijn (eds.), Proceedings of the 31st Annual Conference of the Cognitive Science Society. pp. 1906--1911.
     
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  36.  14
    Reversal and nonreversal shift learning in retardates as a function of overtraining.Elizabeth S. Ohlrich & Leonard E. Ross - 1966 - Journal of Experimental Psychology 72 (4):622.
  37.  35
    Implicit Transfer of Reversed Temporal Structure in Visuomotor Sequence Learning.Kanji Tanaka & Katsumi Watanabe - 2014 - Cognitive Science 38 (3):565-579.
    Some spatio-temporal structures are easier to transfer implicitly in sequential learning. In this study, we investigated whether the consistent reversal of triads of learned components would support the implicit transfer of their temporal structure in visuomotor sequence learning. A triad comprised three sequential button presses ([1][2][3]) and seven consecutive triads comprised a sequence. Participants learned sequences by trial and error, until they could complete it 20 times without error. Then, they learned another sequence, in which each triad (...)
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  38.  11
    Concept learning and verbal control under partial reinforcement and subsequent reversal or nonreversal shifts.Daniel C. O'Connell - 1965 - Journal of Experimental Psychology 69 (2):144.
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  39.  10
    Learning sets for simple concept identification and reversal shifts.Lorraine A. Low, Frederick Gronberg & Bernice Sherling - 1975 - Bulletin of the Psychonomic Society 5 (3):254-256.
  40.  16
    Mediated transfer in reversal and nonreversal shift paired-associate learning.Barbara W. Marquette & L. R. Goulet - 1968 - Journal of Experimental Psychology 76 (1p1):89.
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  41. Social Learning Strategies in Networked Groups.Thomas N. Wisdom, Xianfeng Song & Robert L. Goldstone - 2013 - Cognitive Science 37 (8):1383-1425.
    When making decisions, humans can observe many kinds of information about others' activities, but their effects on performance are not well understood. We investigated social learning strategies using a simple problem-solving task in which participants search a complex space, and each can view and imitate others' solutions. Results showed that participants combined multiple sources of information to guide learning, including payoffs of peers' solutions, popularity of solution elements among peers, similarity of peers' solutions to their own, and relative (...)
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  42.  48
    Reverse intergenerational learning: a missed opportunity? [REVIEW]Carol Baily - 2009 - AI and Society 23 (1):111-115.
    Traditional teaching pedagogy has the young learning from the old. To improve learning in a business environment, generational differences have been identified as being potential barriers between people. There is a growing realisation that technology can be used to bridge the gap between young and old using reverse mentoring. Moving beyond the confines of using reverse intergenerational learning as a tool for only learning new IT has not yet gained general acceptance in the wider business environment. (...)
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  43.  12
    Effect of discrimination reversal on human discrimination learning.Richard D. Walk - 1952 - Journal of Experimental Psychology 44 (6):410.
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  44.  21
    The role of reversal frequency in learning noisy second order conditional sequences.Thomas Pronk & Ingmar Visser - 2010 - Consciousness and Cognition 19 (2):627-635.
    The hallmark of implicit learning is that complex knowledge can be acquired unconsciously. The second order conditionals of Reed and Johnson were developed to be complex, and they are popular materials for implicit learning research. Recently, it was demonstrated that in a sequence made noisy , shared features of the SOCs may be learned explicitly . What are these shared features? We hypothesized that low reversal frequency may play a significant role. We have varied reversal frequency, (...)
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  45.  20
    Influence of successive habit reversals on human learning and transfer.Nancy T. Paul & Clyde E. Noble - 1964 - Journal of Experimental Psychology 68 (1):37.
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  46.  16
    Towards an Aesthetics of Reversibility, or What Merleau-Ponty did not Want to Learn from Kant.Ingebjørg Seip - 2009 - Nordic Journal of Aesthetics 20 (36-37).
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  47.  96
    Bayesian reverse-engineering considered as a research strategy for cognitive science.Carlos Zednik & Frank Jäkel - 2016 - Synthese 193 (12):3951-3985.
    Bayesian reverse-engineering is a research strategy for developing three-level explanations of behavior and cognition. Starting from a computational-level analysis of behavior and cognition as optimal probabilistic inference, Bayesian reverse-engineers apply numerous tweaks and heuristics to formulate testable hypotheses at the algorithmic and implementational levels. In so doing, they exploit recent technological advances in Bayesian artificial intelligence, machine learning, and statistics, but also consider established principles from cognitive psychology and neuroscience. Although these tweaks and heuristics are highly pragmatic in character (...)
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  48.  13
    Studies in serial verbal discrimination learning. IV. Habit reversal after two degrees of learning.D. C. McClelland - 1943 - Journal of Experimental Psychology 33 (6):457.
  49. Reversing the arrow of time.Bryan W. Roberts - 2022 - Cambridge: Cambridge University Press.
    'The arrow of time' refers to the curious asymmetry that distinguishes the future from the past. Reversing the Arrow of Time argues that there is an intimate link between the symmetries of 'time itself' and time reversal symmetry in physical theories, which has wide-ranging implications for both physics and its philosophy. This link helps to clarify how we can learn about the symmetries of our world, how to understand the relationship between symmetries and what is real, and how to (...)
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  50.  15
    Right-response preference in probability learning and reversal.Marilyn E. Miller - 1966 - Journal of Experimental Psychology 71 (5):776.
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