Results for ' working memory'

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  1.  36
    Features and conjunctions in visual working memory.Working Memory - 2012 - In Jeremy M. Wolfe & Lynn C. Robertson (eds.), From Perception to Consciousness: Searching with Anne Treisman. Oxford University Press. pp. 369.
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  2. Patricia S. Goldman-rakic.Working Memory - 1990 - In J. McGaugh, Jerry Weinberger & G. Lynch (eds.), Brain Organization and Memory. Guilford Press. pp. 285.
     
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  3.  10
    The Philosophy of Civilization: Part 1, the Decay and the Restoration of Civilization; Part 2, Civilization and Ethics.Albert Schweitzer, Charles Thomas Campion & The Dale Memorial Lectures - 1960 - New York,: Macmillan Co..
    This scarce antiquarian book is a facsimile reprint of the original. Due to its age, it may contain imperfections such as marks, notations, marginalia and flawed pages. Because we believe this work is culturally important, we have made it available as part of our commitment for protecting, preserving, and promoting the world's literature in affordable, high quality, modern editions that are true to the original work.
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  4.  17
    Working Memory, Thought, and Action.Alan Baddeley - 2007 - Oxford University Press.
    'Working Memory, Thought, and Action' is the magnum opus of one of the most influential cognitive psychologists of the past 50 years. This new volume on the model he created discusses the developments that have occurred within the model in the past twenty years, and places it within a broader context.
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  5. Verbal working memory and sentence comprehension.David Caplan & Gloria S. Waters - 1999 - Behavioral and Brain Sciences 22 (1):77-94.
    This target article discusses the verbal working memory system used in sentence comprehension. We review the concept of working memory as a short-duration system in which small amounts of information are simultaneously stored and manipulated in the service of accomplishing a task. We summarize the argument that syntactic processing in sentence comprehension requires such a storage and computational system. We then ask whether the working memory system used in syntactic processing is the same as (...)
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  6. Working memory is not a natural kind and cannot explain central cognition.Javier Gomez-Lavin - 2020 - Review of Philosophy and Psychology 12 (2):199-225.
    Working memory is a foundational construct of cognitive psychology, where it is thought to be a capacity that enables us to keep information in mind and to use that information to support goal directed behavior. Philosophers have recently employed working memory to explain central cognitive processes, from consciousness to reasoning. In this paper, I show that working memory cannot meet even a minimal account of natural kindhood, as the functions of maintenance and manipulation of (...)
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  7. Working Memory and Consciousness: the current state of play.Marjan Persuh, Eric LaRock & Jacob Berger - 2018 - Frontiers in Human Neuroscience 12.
    Working memory, an important posit in cognitive science, allows one to temporarily store and manipulate information in the service of ongoing tasks. Working memory has been traditionally classified as an explicit memory system – that is, as operating on and maintaining only consciously perceived information. Recently, however, several studies have questioned this assumption, purporting to provide evidence for unconscious working memory. In this paper, we focus on visual working memory and critically (...)
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  8. Working memory and conscious awareness.A. D. Baddeley - 1993 - In A. Collins, S. Gathercole, Martin A. Conway & P. E. Morris (eds.), Theories of Memory. Lawrence Erlbaum.
  9.  35
    Working memory and the control of action: evidence from task switching.Alan Baddeley, Dino Chincotta & Anna Adlam - 2001 - Journal of Experimental Psychology: General 130 (4):641.
  10.  47
    Implicit working memory.Ran R. Hassin, John A. Bargh, Andrew D. Engell & Kathleen C. McCulloch - 2009 - Consciousness and Cognition 18 (3):665-678.
    Working Memory plays a crucial role in many high-level cognitive processes . The prevalent view holds that active components of WM are predominantly intentional and conscious. This conception is oftentimes expressed explicitly, but it is best reflected in the nature of major WM tasks: All of them are blatantly explicit. We developed two new WM paradigms that allow for an examination of the role of conscious awareness in WM. Results from five studies show that WM can operate unintentionally (...)
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  11.  78
    Working memory and everyday conditional reasoning: Retrieval and inhibition of stored counterexamples.Wim De Neys, Walter Schaeken & Géry D'Ydewalle - 1995 - Thinking and Reasoning 11 (4):349-381.
    Two experiments examined the contribution of working memory (WM) to the retrieval and inhibition of background knowledge about counterexamples (alternatives and disablers, Cummins, ) during conditional reasoning. Experiment 1 presented a conditional reasoning task with everyday, causal conditionals to a group of people with high and low WM spans. High spans rejected the logically invalid AC and DA inferences to a greater extent than low spans, whereas low spans accepted the logically valid MP and MT inferences less frequently (...)
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  12.  60
    Working memory and reasoning: An individual differences perspective.Alison Capon, Simon Handley & Ian Dennis - 2003 - Thinking and Reasoning 9 (3):203 – 244.
    This article reports three experiments that investigated the relationship between working memory capacity and syllogistic and five-term series spatial inference. A series of complex and simple verbal and spatial working memory measures were employed. Correlational analyses showed that verbal and spatial working memory span tasks consistently predicted syllogistic and spatial reasoning performance. A confirmatory factor analysis showed that three factors best accounted for the data--a verbal, a spatial, and a general factor. Syllogistic reasoning performance (...)
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  13.  66
    Working Memory in Nonsymbolic Approximate Arithmetic Processing: A Dual‐Task Study With Preschoolers.Iro Xenidou‐Dervou, Ernest C. D. M. Lieshout & Menno Schoot - 2014 - Cognitive Science 38 (1):101-127.
    Preschool children have been proven to possess nonsymbolic approximate arithmetic skills before learning how to manipulate symbolic math and thus before any formal math instruction. It has been assumed that nonsymbolic approximate math tasks necessitate the allocation of Working Memory (WM) resources. WM has been consistently shown to be an important predictor of children's math development and achievement. The aim of our study was to uncover the specific role of WM in nonsymbolic approximate math. For this purpose, we (...)
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  14. Working memory capacity and its relation to general intelligence.Andrew R. A. Conway, Michael J. Kane & Randall W. Engle - 2003 - Trends in Cognitive Sciences 7 (12):547-552.
  15.  13
    Working memory impairment in relation to the severity of anxiety symptoms.Delila Lisica, Maida Koso-Drljević, Birgit Stürmer, Amela Džubur & Christian Valt - 2022 - Cognition and Emotion 36 (6):1093-1108.
    A working memory (WM) deficit is a reliable observation in people experiencing anxiety. Whether the level of anxiety is related to the severity of WM difficulties is still an open question. In the present experiment, we investigated this aspect by testing the WM performance of people with different levels of anxiety symptoms. Participants were grouped according to self-report anxiety into a control group with low anxiety scores and an experimental group with clinically relevant anxiety. The experimental group was (...)
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  16.  6
    Working Memory and Transcranial-Alternating Current Stimulation—State of the Art: Findings, Missing, and Challenges.Wiam Al Qasem, Mohammed Abubaker & Eugen Kvašňák - 2022 - Frontiers in Psychology 13.
    Working memory is a cognitive process that involves maintaining and manipulating information for a short period of time. WM is central to many cognitive processes and declines rapidly with age. Deficits in WM are seen in older adults and in patients with dementia, schizophrenia, major depression, mild cognitive impairment, Alzheimer’s disease, etc. The frontal, parietal, and occipital cortices are significantly involved in WM processing and all brain oscillations are implicated in tackling WM tasks, particularly theta and gamma bands. (...)
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  17. 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 (...)
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  18.  46
    Visual Working Memory Resources Are Best Characterized as Dynamic, Quantifiable Mnemonic Traces.Bella Z. Veksler, Rachel Boyd, Christopher W. Myers, Glenn Gunzelmann, Hansjörg Neth & Wayne D. Gray - 2017 - Topics in Cognitive Science 9 (1):83-101.
    Visual working memory is a construct hypothesized to store a small amount of accurate perceptual information that can be brought to bear on a task. Much research concerns the construct's capacity and the precision of the information stored. Two prominent theories of VWM representation have emerged: slot-based and continuous-resource mechanisms. Prior modeling work suggests that a continuous resource that varies over trials with variable capacity and a potential to make localization errors best accounts for the empirical data. Questions (...)
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  19.  54
    Working Memory From the Psychological and Neurosciences Perspectives: A Review.Wen Jia Chai, Aini Ismafairus Abd Hamid & Jafri Malin Abdullah - 2018 - Frontiers in Psychology 9.
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  20. Working memory or working attention? I A. Baddeley & L. Weiskrantz (Red.).A. Baddeley - 1993 - In A. D. Baddeley & Lawrence Weiskrantz (eds.), Attention: Selection, Awareness, and Control. Oxford University Press.
     
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  21.  19
    Working memory updating and the development of rule-guided behavior.Dima Amso, Sara Haas, Lauren McShane & David Badre - 2014 - Cognition 133 (1):201-210.
  22.  27
    Visual working memory continues to develop through adolescence.Elif Isbell, Keisuke Fukuda, Helen J. Neville & Edward K. Vogel - 2015 - Frontiers in Psychology 6:133416.
    The capacity of visual working memory (VWM) refers to the amount of visual information that can be maintained in mind at once, readily accessible for ongoing tasks. In healthy young adults, the capacity limit of VWM corresponds to about three simple objects. While some researchers argued that VWM capacity becomes adult-like in early years of life, others claimed that the capacity of VWM continues to develop beyond middle childhood. Here we assessed whether VWM capacity reaches adult levels in (...)
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  23.  57
    Working memory requires conscious processes, not vice versa: A global workspace account.Bernard J. Baars - 2003 - In Naoyuki Osaka (ed.), Neural Basis of Consciousness. John Benjamins. pp. 49--11.
  24.  29
    A working memory model of a common procedural error.Michael D. Byrne & Susan Bovair - 1997 - Cognitive Science 21 (1):31-61.
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  25. Visual working memory capacity: from psychophysics and neurobiology to individual differences.Steven J. Luck & Edward K. Vogel - 2013 - Trends in Cognitive Sciences 17 (8):391-400.
  26.  17
    Improving working memory abilities in individuals with Down syndrome: a treatment case study.Hiwet Mariam Costa, Harry Robert McSweeney Purser & Maria Chiara Passolunghi - 2015 - Frontiers in Psychology 6:148881.
    Working Memory (WM) skills of individuals with Down’s syndrome DS tend to be very poor compared to typically developing children of similar mental age. In particular, research has found that in individuals with DS visuo-spatial WM is better preserved than verbal WM. This study investigated whether is possible to train Short-Term Memory (STM) and WM abilities in individuals with DS. The cases of two teenage children are reported: E.H., 17 years and 3 months, and A.S., 15 years (...)
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  27.  28
    Modeling individual differences in working memory performance: a source activation account.Larry Z. Daily, Marsha C. Lovett & Lynne M. Reder - 2001 - Cognitive Science 25 (3):315-353.
    Working memory resources are needed for processing and maintenance of information during cognitive tasks. Many models have been developed to capture the effects of limited working memory resources on performance. However, most of these models do not account for the finding that different individuals show different sensitivities to working memory demands, and none of the models predicts individual subjects' patterns of performance. We propose a computational model that accounts for differences in working (...) capacity in terms of a quantity called source activation, which is used to maintain goal‐relevant information in an available state. We apply this model to capture the working memory effects of individual subjects at a fine level of detail across two experiments. This, we argue, strengthens the interpretation of source activation as working memory capacity. (shrink)
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  28.  49
    Working memory, short-term memory, and general fluid intelligence: a latent-variable approach.Randall W. Engle, Stephen W. Tuholski, James E. Laughlin & Andrew R. A. Conway - 1999 - Journal of Experimental Psychology: General 128 (3):309.
  29.  10
    Working memory and the developmental analysis of probability judgment.Charles J. Brainerd - 1981 - Psychological Review 88 (6):463-502.
  30.  48
    Working Memory in Wayfinding—A Dual Task Experiment in a Virtual City.Tobias Meilinger, Markus Knauff & Heinrich H. Bülthoff - 2008 - Cognitive Science 32 (4):755-770.
  31.  24
    Modeling Working Memory to Identify Computational Correlates of Consciousness.James A. Reggia, Garrett E. Katz & Gregory P. Davis - 2019 - Open Philosophy 2 (1):252-269.
    Recent advances in philosophical thinking about consciousness, such as cognitive phenomenology and mereological analysis, provide a framework that facilitates using computational models to explore issues surrounding the nature of consciousness. Here we suggest that, in particular, studying the computational mechanisms of working memory and its cognitive control is highly likely to identify computational correlates of consciousness and thereby lead to a deeper understanding of the nature of consciousness. We describe our recent computational models of human working (...) and propose that three computational correlates of consciousness follow from the results of this work: itinerant attractor sequences, top-down gating, and very fast weight changes. Our current investigation is focused on evaluating whether these three correlates are sufficient to create more complex working memory models that encompass compositionality and basic causal inference. We conclude that computational models of working memory are likely to be a fruitful approach to advancing our understanding of consciousness in general and in determining the long-term potential for development of an artificial consciousness specifically. (shrink)
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  32.  63
    Working memory involvement in propositional and spatial reasoning.Karl Christoph Klauer - 1997 - Thinking and Reasoning 3 (1):9 – 47.
    Four experiments assessed the relative involvement of different working memory components in two types of reasoning tasks: propositional and spatial reasoning. Using the secondary-task methodology, visual, central-executive, and phonological loads were realised. Although the involvement of visuospatial resources in propositional reasoning has traditionally been considered to be small, an overall analysis of the present data suggests an alternative account. A theoretical analysis of the pattern of results in terms of Evans' (1984, 1989) twostage theory of reasoning is proposed (...)
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  33.  67
    Working Memory in Perspective.Jackie Andrade (ed.) - 2001 - Psychology Press.
    In this book, experienced researchers in the field address the question: Will the model survive these challenges?
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  34.  12
    Working memory load disrupts gaze-cued orienting of attention.Anna K. Bobak & Stephen R. H. Langton - 2015 - Frontiers in Psychology 6.
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  35.  52
    Working memory and neural oscillations: alpha–gamma versus theta–gamma codes for distinct WM information?Frédéric Roux & Peter J. Uhlhaas - 2014 - Trends in Cognitive Sciences 18 (1):16-25.
  36.  18
    Working Memory Training for Healthy Older Adults: The Role of Individual Characteristics in Explaining Short- and Long-Term Gains.Erika Borella, Elena Carbone, Massimiliano Pastore, Rossana De Beni & Barbara Carretti - 2017 - Frontiers in Human Neuroscience 11.
  37. How conscious experience and working memory interact.Bernard J. Baars & Stan Franklin - 2003 - Trends in Cognitive Sciences 7 (4):166-172.
  38.  15
    Working Memory in Aphasia: The Role of Temporal Information Processing.Mateusz Choinski, Elzbieta Szelag, Tomasz Wolak & Aneta Szymaszek - 2020 - Frontiers in Human Neuroscience 14.
    Aphasia is an acquired impairment of language functions resulting from a brain lesion. It is usually accompanied by deficits in non-linguistic cognitive processes. This study aimed to investigate in patients with aphasia the complex interrelationships between selected cognitive functions: auditory speech comprehension, working memory, and temporal information processing in the millisecond time range. Thirty right-handed subjects aged from 27 to 82 years suffering from post-stroke aphasia participated in the study. Verbal working memory and spatial working (...)
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  39.  27
    A working memory account for spatial–numerical associations.Jean-Philippe van Dijck & Wim Fias - 2011 - Cognition 119 (1):114-119.
  40.  94
    Working-memory capacity and the control of attention: the contributions of goal neglect, response competition, and task set to Stroop interference.Michael J. Kane & Randall W. Engle - 2003 - Journal of Experimental Psychology: General 132 (1):47.
  41.  37
    When working memory may be just working, not memory.Andre Beukers, Maia Hamin, Kenneth A. Norman & Jonathan D. Cohen - 2024 - Psychological Review 131 (2):563-577.
  42.  33
    The Centered Mind: What the Science of Working Memory Shows Us About the Nature of Human Thought.Peter Carruthers - 2015 - Oxford, GB: Oxford University Press UK.
    The Centered Mind offers a new view of the nature and causal determinants of both reflective thinking and, more generally, the stream of consciousness. Peter Carruthers argues that conscious thought is always sensory-based, relying on the resources of the working-memory system. This system enables sensory images to be sustained and manipulated through attentional signals directed at midlevel sensory areas of the brain. When abstract conceptual representations are bound into these images, we consciously experience ourselves as making judgments or (...)
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  43.  13
    Working memory and connectionist models of parsing: A reply to MacDonald and Christiansen (2002).David Caplan & Gloria Waters - 2002 - Psychological Review 109 (1):66-74.
  44. Working memory in perspective: Foreword.A. D. Baddeley & G. Hitch - 2001 - In Jackie Andrade (ed.), Working Memory in Perspective. Psychology Press. pp. 240--260.
     
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  45.  36
    Phonological working memory and reading in students with dyslexia.Carolina A. F. de Carvalho, Adriana de S. B. Kida, Simone A. Capellini & Clara R. B. de Avila - 2014 - Frontiers in Psychology 5.
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  46.  61
    Beyond working memory: the role of persistent activity in decision making.Clayton E. Curtis & Daeyeol Lee - 2010 - Trends in Cognitive Sciences 14 (5):216-222.
  47.  34
    Reassessing working memory: Comment on Just and Carpenter (1992) and Waters and Caplan (1996).Maryellen C. MacDonald & Morten H. Christiansen - 2002 - Psychological Review 109 (1):35-54.
  48.  31
    Positive feelings facilitate working memory and complex decision making among older adults.Stephanie M. Carpenter, Ellen Peters, Daniel Västfjäll & Alice M. Isen - 2013 - Cognition and Emotion 27 (1):184-192.
    The impact of induced mild positive feelings on working memory and complex decision making among older adults (aged 63–85) was examined. Participants completed a computer administered card task in which participants could win money if they chose from “gain” decks and lose money if they chose from “loss” decks. Individuals in the positive-feeling condition chose better than neutral-feeling participants and earned more money overall. Participants in the positive-feeling condition also demonstrated improved working-memory capacity. These effects of (...)
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  49.  29
    Working memory capacity and spontaneous emotion regulation in generalised anxiety disorder.K. Lira Yoon, Joelle LeMoult, Atayeh Hamedani & Randi McCabe - 2018 - Cognition and Emotion 32 (1):215-221.
    Researchers have postulated that deficits in cognitive control are associated with, and thus may underlie, the perseverative thinking that characterises generalised anxiety disorder. We examined associations between cognitive control and levels of spontaneous state rumination following a stressor in a sample of healthy control participants and participants with GAD. We assessed cognitive control by measuring working memory capacity, defined as the ability to maintain task-relevant information by ignoring task-irrelevant information. To this end, we used an affective version of (...)
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  50.  53
    Visual working memory depends on attentional filtering.Nelson Cowan & Candice C. Morey - 2006 - Trends in Cognitive Sciences 10 (4):139-141.
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