Results for 'Memory Retention'

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  1. Working memory retention systems: A state of activated long-term memory.Daniel S. Ruchkin, Jordan Grafman, Katherine Cameron & Rita S. Berndt - 2003 - Behavioral and Brain Sciences 26 (6):709-728.
    High temporal resolution event-related brain potential and electroencephalographic coherence studies of the neural substrate of short-term storage in working memory indicate that the sustained coactivation of both prefrontal cortex and the posterior cortical systems that participate in the initial perception and comprehension of the retained information are involved in its storage. These studies further show that short-term storage mechanisms involve an increase in neural synchrony between prefrontal cortex and posterior cortex and the enhanced activation of long-term memory representations (...)
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  2.  12
    Enhancing Children’s Motor Memory Retention Through Acute Intense Exercise: Effects of Different Exercise Durations.Rosa Angulo-Barroso, Blai Ferrer-Uris & Albert Busquets - 2019 - Frontiers in Psychology 10.
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  3.  21
    Neglecting the posterior parietal cortex: The role of higher-order perceptual memories for working-memory retention.Axel Mecklinger & Bertram Opitz - 2003 - Behavioral and Brain Sciences 26 (6):749-749.
    The view that posterior brain systems engaged in lower-order perceptual functions are activated during sustained retention is challenged by fMRI data, which show consistent retention-related activation of higher-order memory representations for a variety of working-memory materials. Sustained retention entails the dynamic link of these higher-order memories with schemata for goal-oriented action housed by the frontal lobes.
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  4.  20
    Have We Forgotten Auditory Sensory Memory? Retention Intervals in Studies of Nonverbal Auditory Working Memory.Michael A. Nees - 2016 - Frontiers in Psychology 7.
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  5.  31
    Varieties of procedural accounts of working memory retention systems.Nelson Cowan - 2003 - Behavioral and Brain Sciences 26 (6):731-732.
    The present commentary agrees with many of the points made by Ruchkin et al., but brings up several important differences in assumptions. These assumptions have to do with the nature of the capacity limit in working memory and the possible bases of working-memory activation.
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  6. Implicit memory tasks: Retention without conscious recollection.L. I. Roediger Henry & Amir Nader - 2005 - In Amy Wenzel & David C. Rubin (eds.), Cognitive Methods and Their Application to Clinical Research. American Psychological Association. pp. 121-127.
  7.  46
    Retention of order and the binding of verbal and spatial information in short-term memory: Constraints for proceduralist accounts.Murray T. Maybery, Fabrice B. R. Parmentier & Peter J. Clissa - 2003 - Behavioral and Brain Sciences 26 (6):748-748.
    Consistent with Ruchkin and colleagues' proceduralist account, recent research on grouping and verbal-spatial binding in immediate memory shows continuity across short- and long-term retention, and activation of classes of information extending beyond those typically allowed in modular models. However, Ruchkin et al.'s account lacks well-specified mechanisms for the retention of serial order, binding, and the control of activation through attention.
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  8. Implicit memory tasks: Retention without conscious recollection.Iii Roediger, Henry L. & Nader Amir - 2005 - In Amy Wenzel & David C. Rubin (eds.), Cognitive Methods and Their Application to Clinical Research. American Psychological Association. pp. 121-127.
  9.  23
    Adaptive memory: Young children show enhanced retention of fitness-related information.Alp Aslan & Karl-Heinz T. Bäuml - 2012 - Cognition 122 (1):118-122.
  10.  31
    Acquisition and retention in short-term memory.Donald A. Norman - 1966 - Journal of Experimental Psychology 72 (3):369.
  11.  18
    Prose retention: Recognition test effects and style memory.Robert E. Christiansen, D. James Dooling & Thomas F. Keenan - 1978 - Bulletin of the Psychonomic Society 11 (6):383-386.
  12. Retention-Memory, Perception and the Cognition of Enduring Objects.D. Ferrari - 1981 - Aletheia 2:65-123.
     
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  13. Implicit memory tasks: Retention without conscious recollection.Henry L. Roediger & Nader Amir - 2005 - In Amy Wenzel & David C. Rubin (eds.), Cognitive Methods and Their Application to Clinical Research. American Psychological Association. pp. 121-127.
  14.  60
    Maximizing Students' Retention via Spaced Review: Practical Guidance From Computational Models of Memory.Mohammad M. Khajah, Robert V. Lindsey & Michael C. Mozer - 2014 - Topics in Cognitive Science 6 (1):157-169.
    During each school semester, students face an onslaught of material to be learned. Students work hard to achieve initial mastery of the material, but when they move on, the newly learned facts, concepts, and skills degrade in memory. Although both students and educators appreciate that review can help stabilize learning, time constraints result in a trade-off between acquiring new knowledge and preserving old knowledge. To use time efficiently, when should review take place? Experimental studies have shown benefits to long-term (...)
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  15.  27
    Retention characteristics of different reproduction cues in motor short-term memory.Gerald J. Laabs - 1973 - Journal of Experimental Psychology 100 (1):168.
  16.  34
    Long-term memory as a function of retention time and repeated recalling.Edward A. Bilodeau, Marshall B. Jones & C. Michael Levy - 1964 - Journal of Experimental Psychology 67 (4):303.
  17.  8
    The Fate of Early Memories: Developmental Science and the Retention of Childhood Experiences.Mark L. Howe (ed.) - 2000 - American Psychological Association.
    Does infantile amnesia exist? Can children accurately recall traumatic events? Do memory's organizing, storage, and retrieval mechanisms change during childhood development? Through a thorough examination of recent scientific evidence, The Fate of Early Memories divorces fact from fiction regarding the nature, durability, and fallibility of memory.
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  18.  22
    Short-term memory as a function of information processing during the retention interval.Richard F. Dillon & L. Starling Reid - 1969 - Journal of Experimental Psychology 81 (2):261.
  19.  10
    Acquisition and retention of mnemonic information in long-term memory.Paul M. Wortman & Phillip B. Sparling - 1974 - Journal of Experimental Psychology 102 (1):22.
  20.  14
    Effect of retention interval on implicit and explicit memory for pictures.Joan Gay Snodgrass & Aimee Surprenant - 1989 - Bulletin of the Psychonomic Society 27 (5):395-398.
  21.  10
    Pigeons’ spatial reference memory is stable over long retention intervals.Donald M. Wilkie & Robert J. Willson - 1989 - Bulletin of the Psychonomic Society 27 (3):271-273.
  22.  11
    Long-term memory as a function of retention time and other conditions of training and recall.Edward A. Bilodeau & C. Michael Levy - 1964 - Psychological Review 71 (1):27-41.
  23. Working memory as a mental workspace: Why activated long-term memory is not enough.Robert H. Logie & Sergio Della Sala - 2003 - Behavioral and Brain Sciences 26 (6):745-746.
    Working-memory retention as activated long-term memory fails to capture orchestrated processing and storage, the hallmark of the concept of working memory. The event-related potential (ERP) data are compatible with working memory as a mental workspace that holds and manipulates information on line, which is distinct from long-term memory, and deals with the products of activated traces from stored knowledge.
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  24. Arousal and memory-impulsivity, time of day, and retention interval.W. Revelle & M. Puchalski - 1988 - Bulletin of the Psychonomic Society 26 (6):511-511.
     
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  25. Protention and retention in biological systems.Giuseppe Longo & Maël Montévil - 2011 - Theory in Biosciences 130:107-117.
    This article proposes an abstract mathematical frame for describing some features of cognitive and biological time. We focus here on the so called “extended present” as a result of protentional and retentional activities (memory and anticipation). Memory, as retention, is treated in some physical theories (relaxation phenomena, which will inspire our approach), while protention (or anticipation) seems outside the scope of physics. We then suggest a simple functional representation of biological protention. This allows us to introduce the (...)
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  26.  28
    High-speed memory scan as a retention interval activity in short-term memory.David S. Gorfein - 1974 - Bulletin of the Psychonomic Society 3 (4):282-284.
  27.  23
    Highly Superior Autobiographical Memory: Quality and Quantity of Retention Over Time.Aurora K. R. LePort, Shauna M. Stark, James L. McGaugh & Craig E. L. Stark - 2015 - Frontiers in Psychology 6.
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  28.  18
    Effects of formal interitem similarity and length of retention interval on proactive inhibition of short-term memory.John H. Wright - 1967 - Journal of Experimental Psychology 75 (3):386.
  29.  20
    Visual and auditory short-term memory: The effects of phonemically similar auditory shadow material during the retention interval.Stanley R. Parkinson, Theodore E. Parks & Neal E. Kroll - 1971 - Journal of Experimental Psychology 87 (2):274.
  30.  21
    Effect of response requirement and type of material on acquisition and retention performance in short-term memory.George Kellas & Earl C. Butterfield - 1971 - Journal of Experimental Psychology 88 (1):50.
  31.  49
    The retention of individual items.Bennet B. Murdock - 1961 - Journal of Experimental Psychology 62 (6):618.
  32.  28
    Working memory: Unemployed but still doing day labor.Daniel S. Ruchkin, Jordan Grafman, Katherine Cameron & Rita S. Berndt - 2003 - Behavioral and Brain Sciences 26 (6):760-769.
    The goal of our target article is to establish that electrophysiological data constrain models of short-term memory retention operations to schemes in which activated long-term memory is its representational basis. The temporary stores correspond to neural circuits involved in the perception and subsequent processing of the relevant information, and do not involve specialized neural circuits dedicated to the temporary holding of information outside of those embedded in long-term memory. The commentaries ranged from general agreement with the (...)
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  33.  9
    Comparative retention of open and closed visual forms.H. Gurnee, B. E. Witzeman & M. Heller - 1940 - Journal of Experimental Psychology 27 (1):66.
  34.  13
    Increased Alpha-Band Power during the Retention of Shapes and Shape-Location Associations in Visual Short-Term Memory.Jeffrey S. Johnson, David W. Sutterer, Daniel J. Acheson, Jarrod A. Lewis-Peacock & Bradley R. Postle - 2011 - Frontiers in Psychology 2.
  35.  61
    Patterned Hippocampal Stimulation Facilitates Memory in Patients With a History of Head Impact and/or Brain Injury.Brent M. Roeder, Mitchell R. Riley, Xiwei She, Alexander S. Dakos, Brian S. Robinson, Bryan J. Moore, Daniel E. Couture, Adrian W. Laxton, Gautam Popli, Heidi M. Clary, Maria Sam, Christi Heck, George Nune, Brian Lee, Charles Liu, Susan Shaw, Hui Gong, Vasilis Z. Marmarelis, Theodore W. Berger, Sam A. Deadwyler, Dong Song & Robert E. Hampson - 2022 - Frontiers in Human Neuroscience 16:933401.
    Rationale: Deep brain stimulation (DBS) of the hippocampus is proposed for enhancement of memory impaired by injury or disease. Many pre-clinical DBS paradigms can be addressed in epilepsy patients undergoing intracranial monitoring for seizure localization, since they already have electrodes implanted in brain areas of interest. Even though epilepsy is usually not a memory disorder targeted by DBS, the studies can nevertheless model other memory-impacting disorders, such as Traumatic Brain Injury (TBI). Methods: Human patients undergoing Phase II (...)
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  36.  59
    The Influences of Emotion on Learning and Memory.Chai M. Tyng, Hafeez U. Amin, Mohamad N. M. Saad & Aamir S. Malik - 2017 - Frontiers in Psychology 8:235933.
    Emotion has a substantial influence on the cognitive processes in humans, including perception, attention, learning, memory, reasoning, and problem solving. Emotion has a particularly strong influence on attention, especially modulating the selectivity of attention as well as motivating action and behavior. This attentional and executive control is intimately linked to learning processes, as intrinsically limited attentional capacities are better focused on relevant information. Emotion also facilitates encoding and helps retrieval of information efficiently. However, the effects of emotion on learning (...)
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  37.  28
    Tree shrews (Tupaia belangeri) exhibit novelty preference in the novel location memory task with 24-h retention periods.Jayakrishnan Nair, Marlene Topka, Abbas Khani, Manuela Isenschmid & Gregor Rainer - 2014 - Frontiers in Psychology 5.
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  38. Implicit memory: History and current status.Daniel L. Schacter - 1987 - Journal of Experimental Psychology 13 (3):501-18.
    Je lui ai associÉ un court extrait d'une revue de questions portant sur le même thème. Implicit memory is revealed when previous experiences facilitate perf on a task that does not require conscious or intentional recollection of those expces. Explicit memory is revealed when perf on a task requires conscious recolelction of previous expces. Il s'agit de defs descriptives qui n'impliquent pas l'existence de deux systs de mÉmo sÉparÉs. Historiquement Descartes est le premier ˆ faire mention de phÉnomènes (...)
     
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  39.  92
    ‘‘Just forget it.’’ Memory distortions as bounded rationality.Bruno S. Frey - 2005 - Mind and Society 4 (1):13-25.
    Distortions in memory impose important bounds on rationality but have been largely disregarded in economics. While it is possible to learn, it is more difficult, and sometimes impossible, to unlearn. This retention effect lowers individual utility directly or via reduced productivity, and adds costs to principal-agent relationships. The engraving effect states that the more one tries to forget a piece of information the more vivid it stays in memory, leading to a paradoxical outcome. The effects are based (...)
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  40.  55
    Retrieval Dynamics and Retention in Cross‐Situational Statistical Word Learning.Haley A. Vlach & Catherine M. Sandhofer - 2014 - Cognitive Science 38 (4):757-774.
    Previous research on cross-situational word learning has demonstrated that learners are able to reduce ambiguity in mapping words to referents by tracking co-occurrence probabilities across learning events. In the current experiments, we examined whether learners are able to retain mappings over time. The results revealed that learners are able to retain mappings for up to 1 week later. However, there were interactions between the amount of retention and the different learning conditions. Interestingly, the strongest retention was associated with (...)
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  41.  41
    Attention, Videogames and the Retentional Economies of Affective Amplification.James Ash - 2012 - Theory, Culture and Society 29 (6):3-26.
    This article examines the industrial art of videogame design and production as an exemplar of what could be termed affective design. In doing so, the article theorizes the relationship between affect and attention as part of what Bernard Stiegler calls a ‘retentional economy’ of human and technical memory. Through the examination of a range of different videogames, the article argues that videogame designers utilize techniques of what I term ‘affective amplification’ that seek to modulate affect, which is central to (...)
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  42.  24
    On memory, nostalgia, and the temporal expression of Josquin’s Ave Maria… virgo serena.Jessica Wiskus - 2019 - Continental Philosophy Review 52 (4):397-413.
    I draw upon Edmund Husserl’s classic text, On the Phenomenology of the Consciousness of Internal Time, in order to reframe some of his insight regarding the structures of inner time-consciousness and lay the groundwork for a few claims of my own. First, I show how musical expression is constituted in relation to the flowing movement of absolute subjectivity. Moreover, by carefully distinguishing between retention and recollection, I clarify, on the one hand, music’s ability to support access to memory (...)
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  43.  42
    Compression in Working Memory and Its Relationship With Fluid Intelligence.Mustapha Chekaf, Nicolas Gauvrit, Alessandro Guida & Fabien Mathy - 2018 - Cognitive Science 42 (S3):904-922.
    Working memory has been shown to be strongly related to fluid intelligence; however, our goal is to shed further light on the process of information compression in working memory as a determining factor of fluid intelligence. Our main hypothesis was that compression in working memory is an excellent indicator for studying the relationship between working-memory capacity and fluid intelligence because both depend on the optimization of storage capacity. Compressibility of memoranda was estimated using an algorithmic complexity (...)
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  44. The Temporal Orientation of Memory: It's Time for a Change of Direction.Stan Klein - 2013 - Journal of Applied Research in Memory and Cognition 2:222-234.
    Common wisdom, philosophical analysis and psychological research share the view that memory is subjectively positioned toward the past: Specifically, memory enables one to become re-acquainted with the objects and events of his or her past. In this paper I call this assumption into question. As I hope to show, memory has been designed by natural selection not to relive the past, but rather to anticipate and plan for future contingencies -- a decidedly future-oriented mode of subjective temporality. (...)
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  45.  37
    Memory for emotionally provocative words in alexithymia: A role for stimulus relevance.Mitchell A. Meltzer & Kristy A. Nielson - 2010 - Consciousness and Cognition 19 (4):1062-1068.
    Alexithymia is associated with emotion processing deficits, particularly for negative emotional information. However, also common are a high prevalence of somatic symptoms and the perception of somatic sensations as distressing. Although little research has yet been conducted on memory in alexithymia, we hypothesized a paradoxical effect of alexithymia on memory. Specifically, recall of negative emotional words was expected to be reduced in alexithymia, while memory for illness words was expected to be enhanced in alexithymia.Eighty-five high or low (...)
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  46.  10
    Short-term retention as a function of contextual constraint.Kenneth E. Lloyd & William A. Johnston - 1963 - Journal of Experimental Psychology 65 (5):460.
  47.  46
    Activation of long-term memory by alpha oscillations in a working-memory task?Wolfgang Klimesch & Bärbel Schack - 2003 - Behavioral and Brain Sciences 26 (6):743-743.
    We focus on the functional specificity of theta and alpha oscillations and show that theta is related to working memory, whereas alpha is related to semantic long-term memory. Recent studies, however, indicate that alpha oscillations also play an important role during short-term memory retention and retrieval. This latter finding provides support for the basic hypothesis suggested by Ruchkin et al.
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  48.  27
    Memory Without Consolidation: Temporal Distinctiveness Explains Retroactive Interference.Ullrich K. H. Ecker, Gordon D. A. Brown & Stephan Lewandowsky - 2015 - Cognitive Science 39 (7):1570-1593.
    Is consolidation needed to account for retroactive interference in free recall? Interfering mental activity during the retention interval of a memory task impairs performance, in particular if the interference occurs in temporal proximity to the encoding of the to-be-remembered information. There are at least two rival theoretical accounts of this temporal gradient of retroactive interference. The cognitive neuroscience literature has suggested neural consolidation is a pivotal factor determining item recall. According to this account, interfering activity interrupts consolidation processes (...)
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  49.  10
    Memory for pleasant, unpleasant, and indifferent pairs of words.H. Cason & F. C. Lungren - 1932 - Journal of Experimental Psychology 15 (6):728.
  50.  24
    Retention systems of the brain: Evidence from neuropsychological patients.Barbara J. Knowlton & Indre V. Viskontas - 2003 - Behavioral and Brain Sciences 26 (6):743-744.
    Studies of neuropsychological patients are relevant to models of how long-term memories are stored. If amnesia is considered a binding deficit and not a difficulty in transferring information from short-term to long-term memory, it is unclear why context-free semantic learning is impaired. Also the model should account for the reverse temporal gradient seen in patients with semantic dementia.
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