Results for ' memory systems'

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  1.  65
    Memory systems and the control of skilled action.Wayne Christensen, John Sutton & Kath Bicknell - 2019 - Philosophical Psychology 32 (5):692-718.
    ABSTRACTIn keeping with the dominant view that skills are largely automatic, the standard view of memory systems distinguishes between a representational declarative system associated with cognitive processes and a performance-based procedural system. The procedural system is thought to be largely responsible for the performance of well-learned skilled actions. Here we argue that most skills do not fully automate, which entails that the declarative system should make a substantial contribution to skilled performance. To support this view, we review evidence (...)
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  2. Transactive Memory Systems: A Mechanistic Analysis of Emergent Group Memory.Georg Theiner - 2013 - Review of Philosophy and Psychology 4 (1):65-89.
    Wegner, Giuliano, and Hertel (1985) defined the notion of a transactive memory system (TMS) as a group level memory system that “involves the operation of the memory systems of the individuals and the processes of communication that occur within the group (p. 191). Those processes are the collaborative procedures (“transactions”) by which groups encode, store, and retrieve information that is distributed among their members. Over the past 25+ years, the conception of a TMS has progressively garnered (...)
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  3.  62
    Memory Systems and the Mnemic Character of Procedural Memory.Jonathan Najenson - forthcoming - British Journal for the Philosophy of Science.
    According to a standard view in psychology and neuroscience, there are multiple memory systems in the brain. Philosophers and scientists of memory rely on the idea that there are multiple memory systems in the brain to infer that procedural memory is not a cognitive form of memory. As a result, memory is considered to be a disunified capacity. In this paper, I evaluate two criteria used by Michaelian to demarcate between cognitive and (...)
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  4.  27
    Memory systems do not divide on consciousness: Reinterpreting memory in terms of activation and binding.L. M. Reder, H. Park & P. D. Kieffaber - 2009 - Psychological Bulletin 135 (1).
    There is a popular hypothesis that performance on implicit and explicit memory tasks reflects 2 distinct memory systems. Explicit memory is said to store those experiences that can be consciously recollected, and implicit memory is said to store experiences and affect subsequent behavior but to be unavailable to conscious awareness. Although this division based on awareness is a useful taxonomy for memory tasks, the authors review the evidence that the unconscious character of implicit (...) does not necessitate that it be treated as a separate system of human memory. They also argue that some implicit and explicit memory tasks share the same memory representations and that the important distinction is whether the task (implicit or explicit) requires the formation of a new association. The authors review and critique dissociations from the behavioral, amnesia, and neuroimaging literatures that have been advanced in support of separate explicit and implicit memory systems by highlighting contradictory evidence and by illustrating how the data can be accounted for using a simple computational memory model that assumes the same memory representation for those disparate tasks. (shrink)
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  5.  21
    Memory Systems, the Epistemic Arrow of Time, and the Second Law.David H. Wolpert & Jens Kipper - 2024 - Entropy 26 (2).
    The epistemic arrow of time is the fact that our knowledge of the past seems to be both of a different kind and more detailed than our knowledge of the future. Just like with the other arrows of time, it has often been speculated that the epistemic arrow arises due to the second law of thermodynamics. In this paper, we investigate the epistemic arrow of time using a fully formal framework. We begin by defining a memory system as any (...)
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  6. Memory systems.A. D. Baddeley, D. L. Schacter & E. Tulving - 1994 - In Memory Systems. MIT Press.
  7.  17
    Multiple memory systems: What and why, an update.Lynn Nadel - 1994 - In Memory Systems. MIT Press. pp. 1994--39.
  8.  6
    Memory: Systems, Process, or Function?Jonathan K. Foster & Marko Jelicic (eds.) - 1999 - Oxford University Press UK.
    Memory represents a key psychological process. It allows us to recall things from the past which may have taken place hours, days, months, or even many years ago. Our memories are intrinsically personal, subjective, and internal, yet without the primary capacity of memory, other important activities such as speech, perception, concept formation, and reasoning would be impossible. The range of different aspects of memory is huge, from our vocabulary and knowledge about language and the world to our (...)
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  9.  74
    Multiple memory systems and consciousness.Endel Tulving - 1987 - Human Neurobiology 6:67-80.
  10. Memory systems in the brain and the localization of a memory.R. F. Thompson & J. J. Kim - 1996 - Proceedings of the National Academy of Sciences of the United States of America 93 (24):13438-13444.
  11. Consciousness as a Memory System.Andrew E. Budson, Kenneth A. Richman & Elizabeth A. Kensinger - forthcoming - Cognitive and Behavioral Neurology.
    We suggest that there is confusion between why consciousness developed and what additional functions, through continued evolution, it has co-opted. Consider episodic memory. If we believe that episodic memory evolved solely to accurately represent past events, it seems like a terrible system—prone to forgetting and false memories. However, if we believe that episodic memory developed to flexibly and creatively combine and rearrange memories of prior events in order to plan for the future, then it is quite a (...)
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  12.  39
    Transactive memory systems scale for couples: development and validation.Lauren Y. Hewitt & Lynne D. Roberts - 2015 - Frontiers in Psychology 6.
  13.  15
    Memory systems, frontal cortex, and the hippocampal axis.Amanda Parker - 1999 - Behavioral and Brain Sciences 22 (3):464-465.
    Three comments are made. The proposal that recollection and familiarity-based recognition take different thalamic routes does not fit recent experimental evidence, suggesting that mediodorsal thalamus acts in an integrative role with respect to prefrontal cortex. Second, the role of frontal cortex in episodic memory has been understated. Third, the role of the hippocampal axis is likely to be the computation and storage of ideothetic information.
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  14. Know-how, intellectualism, and memory systems.Felipe De Brigard - 2019 - Philosophical Psychology 32 (5):720-759.
    ABSTRACTA longstanding tradition in philosophy distinguishes between knowthatand know-how. This traditional “anti-intellectualist” view is soentrenched in folk psychology that it is often invoked in supportof an allegedly equivalent distinction between explicit and implicitmemory, derived from the so-called “standard model of memory.”In the last two decades, the received philosophical view has beenchallenged by an “intellectualist” view of know-how. Surprisingly, defenders of the anti-intellectualist view have turned to the cognitivescience of memory, and to the standard model in particular, todefend their (...)
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  15. Memory systems, neural basis of.D. L. Schacter, T. Bayne, A. Cleermans & P. Wilken - 2009 - In Bayne Tim, Cleeremans Axel & Wilken Patrick (eds.), The Oxford Companion to Consciousness. Oxford University Press.
     
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  16.  5
    Adaptive memory systems for remembering the salient and the seemingly mundane.Maureen Ritchey, Vishnu P. Murty & Joseph E. Dunsmoor - 2016 - Behavioral and Brain Sciences 39.
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  17.  69
    Composition and Transactive Memory Systems.Michael David Kirchhoff - 2016 - Philosophical Explorations 19 (1):59-77.
    A recurrent theme in research on socially distributed cognition is to establish the claim that the cognitive phenomenon of transactive memory is grounded in a specific mode of organization: mechanistic compositional organization. My topic is the confluence of transactive remembering or transactive memory systems (TMSs) and mechanistic compositional organization. In relation to this confluence, the paper scrutinizes the claim that the kind of organization grounding TMSs and/or tokens of transactive remembering takes the specific form of mechanistic compositional (...)
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  18. Memory systems and conscious processes.G. Underwood - 1979 - In G. Underwood & R. Stevens (eds.), Aspects of Consciousness, Volume 1. Academic Press.
  19.  49
    The evolution of multiple memory systems.David F. Sherry & Daniel L. Schacter - 1987 - Psychological Review 94 (4):439-454.
  20.  59
    Stress and multiple memory systems: from 'thinking' to 'doing'.Lars Schwabe & Oliver T. Wolf - 2013 - Trends in Cognitive Sciences 17 (2):60-68.
  21.  27
    Are there multiple memory systems? Tests of models of implicit and explicit memory.David R. Shanks & Christopher J. Berry - 2012 - Quarterly Journal of Experimental Psychology 65:1449-1474.
    This article reviews recent work aimed at developing a new framework, based on signal detection theory, for understanding the relationship between explicit (e.g., recognition) and implicit (e.g., priming) memory. Within this framework, different assumptions about sources of memorial evidence can be framed. Application to experimental results provides robust evidence for a single-system model in preference to multiple-systems models. This evidence comes from several sources including studies of the effects of amnesia and ageing on explicit and implicit memory. (...)
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  22. Whater are the memory systems of 1994.D. Schacter & E. Tulving - 1994 - In Memory Systems. MIT Press. pp. 341--380.
  23. Distributed selves: Personal identity and extended memory systems.Richard Heersmink - 2017 - Synthese 194 (8):3135–3151.
    This paper explores the implications of extended and distributed cognition theory for our notions of personal identity. On an extended and distributed approach to cognition, external information is under certain conditions constitutive of memory. On a narrative approach to personal identity, autobiographical memory is constitutive of our diachronic self. In this paper, I bring these two approaches together and argue that external information can be constitutive of one’s autobiographical memory and thus also of one’s diachronic self. To (...)
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  24.  53
    New approach illuminates how memory systems switch.Sam McKenzie & Howard Eichenbaum - 2012 - Trends in Cognitive Sciences 16 (2):102-103.
  25.  41
    Learning and memory: Systems analysis.Eichenbaum Howard B., Cahill Lawrence & Gluck Mark - 1999 - In M. J. Zigmond & F. E. Bloom (eds.), Fundamental Neuroscience.
    ces, learning facts and gaining conceptual knowlge, recognizing objects and people, and acquiring ills and habits. Scientific thinking about memory was minated for many years by the assumption that mory is a unitary or monolithic entityRi2;a single ulty of the mind and brain. However, the assumpri of a unitary memory has been challenged by conging evidence from psychology and neuroscience inting toward multiple memory systems that can be sociated from one another. This chapter provides a torical (...)
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  26.  31
    Dissociable learning and memory systems of the brain.Larry R. Squire, Stephan Hamann & Barbara Knowlton - 1994 - Behavioral and Brain Sciences 17 (3):422-423.
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  27.  12
    Communication in Theory and Research on Transactive Memory Systems: A Literature Review.Vesa Peltokorpi & Anthony C. Hood - 2019 - Topics in Cognitive Science 11 (4):644-667.
    Peltokorpi and Hood provide a systematic review of theory and research examining the ways communication and conversations help dyads, groups, and teams form and maintain transactive memory systems (TMS; Wegner, Erber, & Raymond, 1991) through overlapping encoding, storage, and retrieval processes. Peltokorpi and Hood organized their systematic review of 34 articles published in psychology, communication and organization research and management into four main themes: i) communication frequency and quality; ii) communication medium and group development, iii) communication styles, and (...)
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  28.  19
    Why Language Evolution Needs Memory: Systems and Ecological Approaches.Anton V. Sukhoverkhov & Carol A. Fowler - 2015 - Biosemiotics 8 (1):47-65.
    The main purpose of this article is to consider the significance of different types of memory and non-genetic inheritance and different biosemiotic systems for the origin and evolution of language. It presents language and memory as distributed, heteronomous and system-determined processes implemented in biological and social domains. The article emphasises that language and other sign systems are both ecological and inductive systems that were caused by and always correlate with the environment and deductive systems (...)
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  29. Associations and dissociations in recognition memory systems.Malcolm W. Brown & Warburton & Clea - 2006 - In Hubert Zimmer, Axel Mecklinger & Ulman Lindenberger (eds.), Handbook of Binding and Memory: Perspectives From Cognitive Neuroscience. Oxford University Press.
  30.  35
    Consolidating consolidation? Sleep stages, memory systems, and procedures.John A. Groeger & Derk-Jan Dijk - 2005 - Behavioral and Brain Sciences 28 (1):73-74.
    We argue that by neglecting the fact that procedural memory may also have episodic qualities, and by considering only a systems approach to memory, Walker's account of consolidation of learning during subsequent sleep ignores alternative accounts of how sleep stages may be interdependent. We also question the proposition that sleep-based consolidation largely bypasses hippocampal structures.
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  31.  54
    Two functional components of the hippocampal memory system.Howard Eichenbaum, Tim Otto & Neal J. Cohen - 1994 - Behavioral and Brain Sciences 17 (3):449-472.
    There is considerable evidence that the hippocampal system contributes both to the temporary maintenance of memories and to the processing of a particular type of memory representation. The findings on amnesia suggest that these two distinguishing features of hippocampal memory processing are orthogonal. Together with anatomical and physiological data, the neuropsychological findings support a model of cortico-hippocampal interactions in which the temporal and representational properties of hippocampal memory processing are mediated separately. We propose that neocortical association areas (...)
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  32.  15
    Dissociating multiple memory systems: Don't forsake the brain.Mark G. Packard - 1994 - Behavioral and Brain Sciences 17 (3):414-415.
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  33.  4
    The general-purpose working memory system and functions of the dorsolateral prefrontal cortex.Shintaro Funahashi - 2007 - In Naoyuki Osaka, Robert H. Logie & Mark D'Esposito (eds.), The Cognitive Neuroscience of Working Memory. Oxford University Press. pp. 213.
  34. Psychological time and memory systems of the brain.Richard A. Block - 1996 - In J. T. Fraser & M. Soulsby (eds.), Dimensions of Time and Life: The Study of Time. , Volume 8.
  35.  15
    The hippocampal memory system and its functional comments: Further explication and clarification.Howard Eichenbaum, Tim Otto & Neal J. Cohen - 1994 - Behavioral and Brain Sciences 17 (3):500-517.
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  36. Neural basis of memory: Systems level.Arthur P. Shimamura - 2003 - In L. Nadel (ed.), Encyclopedia of Cognitive Science. Nature Publishing Group.
     
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  37.  8
    Priming in a distributed memory system: Implications for models of implicit memory.Bennet B. Murdock - 1989 - In S. Lewandowsky, J. M. Dunn & K. Kirsner (eds.), Implicit Memory: Theoretical Issues. Lawrence Erlbaum. pp. 87.
  38.  45
    Making Sense of Group Cognition: The Curious Case of Transactive Memory Systems.Georg Theiner - 2009 - In W. Christensen, E. Schier & J. Sutton (eds.), ASCS09: Proceedings of the 9th Conference of the Australasian Society for Cognitive Science. Macquarie Center for Cognitive Science. pp. 334-42.
    The “extended mind” thesis (Clark, 2008) has focused primarily on the interactions between single individuals and cognitive artifacts, resulting in a relative neglect of interactions between people. At the same time, the idea that groups can have cognitive properties of their own has gained new ascendancy in various fields concerned with collective behavior. My main goal in this paper is to propose an understanding of group cognition as an emergent form of socially distributed cognition. To that end, I first clarify (...)
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  39. Memory-guided attention: control from multiple memory systems.J. Benjamin Hutchinson & Nicholas B. Turk-Browne - 2012 - Trends in Cognitive Sciences 16 (12):576-579.
    Attention is strongly influenced by both external stimuli and internal goals. However, this useful dichotomy does not readily capture the ubiquitous and often automatic contribution of past experience stored in memory. We review recent evidence about how multiple memory systems control attention, consider how such interactions are manifested in the brain, and highlight how this framework for ‘memory-guided attention’ might help systematize previous findings and guide future research.
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  40. The construction of autobiographical memories in the self-memory system.Martin A. Conway & Christopher W. Pleydell-Pearce - 2000 - Psychological Review 107 (2):261-288.
  41.  43
    The Multiplicity of Memory Enhancement: Practical and Ethical Implications of the Diverse Neural Substrates Underlying Human Memory Systems.Kieran C. R. Fox, Nicholas S. Fitz & Peter B. Reiner - 2016 - Neuroethics 10 (3):375-388.
    The neural basis of human memory is incredibly complex. We argue that the diversity of neural systems underlying various forms of memory suggests that any discussion of enhancing ‘memory’ per se is too broad, thus obfuscating the biopolitical debate about human enhancement. Memory can be differentiated into at least four major systems with largely dissociable neural substrates. We outline each system, and discuss both the practical and the ethical implications of these diverse neural substrates. (...)
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  42.  28
    Encoding and Accessing Linguistic Representations in a Dynamically Structured Holographic Memory System.Dan Parker & Daniel Lantz - 2017 - Topics in Cognitive Science 9 (1):51-68.
    This paper presents a computational model that integrates a dynamically structured holographic memory system into the ACT-R cognitive architecture to explain how linguistic representations are encoded and accessed in memory. ACT-R currently serves as the most precise expression of the moment-by-moment working memory retrievals that support sentence comprehension. The ACT-R model of sentence comprehension is able to capture a range of linguistic phenomena, but there are cases where the model makes the wrong predictions, such as the over-prediction (...)
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  43.  21
    Encoding and Accessing Linguistic Representations in a Dynamically Structured Holographic Memory System.Dan Parker & Daniel Lantz - 2016 - Topics in Cognitive Science 8 (4).
    This paper presents a computational model that integrates a dynamically structured holographic memory system into the ACT-R cognitive architecture to explain how linguistic representations are encoded and accessed in memory. ACT-R currently serves as the most precise expression of the moment-by-moment working memory retrievals that support sentence comprehension. The ACT-R model of sentence comprehension is able to capture a range of linguistic phenomena, but there are cases where the model makes the wrong predictions, such as the over-prediction (...)
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  44.  51
    Phenomenological coping skills and the striatal memory system.Elizabeth Ennen - 2003 - Phenomenology and the Cognitive Sciences 2 (4):299-325.
    Most cognitive scientists are committed to some version of representationalism, the view that intelligent behavior is caused by internal processes that involve computations over representations. Phenomenologists, however, argue that certain types of intelligent behavior, engaged coping skills, are nonrepresentational. Recent neuroscientific work on multiple memory systems indicates that while many types of intelligent behavior are representational, the types of intelligent behavior cited by phenomenologists are indeed nonrepresentational. This neuroscientific research thus vindicates a key phenomenological claim about the nature (...)
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  45.  9
    Linking Authentic Leadership to Transactive Memory System, Team Innovativeness, and Selling Performance: A Multilevel Investigation.Muhammad Asim Shahzad & Tahir Iqbal - 2022 - Frontiers in Psychology 13:884198.
    In today’s complex selling environment, it is challenging for sales leaders to enhance the effectiveness of their sales teams. The aim of this study is to observe the impact of authentic leadership on salespersons’ internal and external behaviors under B2B selling context [i.e., transactive memory system, innovative work behavior, and customer-directed OCB] and their consequences in team selling performance. Respondents of our survey included salespersons and managers working in the sales departments of pharmaceutical companies. By using structural equation modeling, (...)
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  46.  6
    From Conditioning to Conscious Recollection: Memory Systems of the Brain.Howard Eichenbaum & Neal J. Cohen - 2004 - Oxford University Press USA.
    This cutting-edge book offers a theoretical account of the evolution of multiple memory systems of the brain. The authors conceptualize these memory systems from both behavioral and neurobiological perspectives.
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  47.  16
    Different ways to cue a coherent memory system: A theory for episodic, semantic, and procedural tasks.Michael S. Humphreys, John D. Bain & Ray Pike - 1989 - Psychological Review 96 (2):208-233.
  48.  17
    Evolutionary mismatch and anomalies in the memory system.Walter Veit & Heather Browning - 2023 - Behavioral and Brain Sciences 46:e381.
    In order to understand involuntary autobiographical memories and déjà vu experiences, we argue that it is important to take an evolutionary medicine perspective. Here, we propose that these memory anomalies can be understood as the outcomes of an inevitable design trade-off between type I and type II errors in memory processing.
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  49.  18
    Is Eichenbaum et al.'s proposal testable and how extensive is the hippocampal memory system?John P. Aggleton - 1994 - Behavioral and Brain Sciences 17 (3):472-473.
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  50.  11
    Comparison of convolution and matrix distributed memory systems for associative recall and recognition.Ray Pike - 1984 - Psychological Review 91 (3):281-294.
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