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  1. What has episodic memory got to do with space and time?Ian Phillips - forthcoming - In Lynn Nadel & Sara Aronowitz (eds.), Space, Time, and Memory. Oxford University Press.
    It is widely held that episodic memory is constitutively connected with space and time. In particular, many contend that episodic memory constitutively has spatial and/or temporal content: for instance, necessarily representing a spatial scene, or when a given event occurred, or at the very minimum that it occurred in the past. Here, I critically assess such claims. I begin with some preparatory remarks on the nature of episodic memory. I then ask: How, if at all, is episodic memory constitutively spatial? (...)
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  • Reward prediction errors create event boundaries in memory.Nina Rouhani, Kenneth A. Norman, Yael Niv & Aaron M. Bornstein - 2020 - Cognition 203 (C):104269.
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  • Far-Persons.Gary Comstock - 2017 - In Woodhall Andrew & Garmendia da Trindade Gabriel (eds.), Ethics and/or Politics: Approaching the Issues Concerning Nonhuman Animals. Palgrave. pp. 39-71.
    I argue for the moral relevance of a category of individuals I characterize as far-persons. Following Gary Varner, I distinguish near-persons, animals with a " robust autonoetic consciousness " but lacking an adult human's " biographical sense of self, " from the merely sentient, those animals living "entirely in the present." I note the possibility of a third class. Far-persons lack a biographical sense of self, possess a weak autonoetic consciousness, and are able to travel mentally through time a distance (...)
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  • The Episodicity of Memory: Current Trends and Issues in Philosophy and Psychology.D. Perrin & S. Rousset - 2014 - Review of Philosophy and Psychology 5 (3):291-312.
    Although episodic memory is a widely studied form of memory both in philosophy and psychology, it still raises many burning questions regarding its definition and even its acceptance. Over the last two decades, cross-disciplinary discussions between these two fields have increased as they tackle shared concerns, such as the phenomenology of recollection, and therefore allow for fruitful interaction. This editorial introduction aims to provide a comprehensive and up-to-date presentation of the main existing conceptions and issues on the topic. After delineating (...)
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  • (1 other version)Précis of Origins of the modern mind: Three stages in the evolution of culture and cognition.Merlin Donald - 1993 - Behavioral and Brain Sciences 16 (4):737-748.
    This book proposes a theory of human cognitive evolution, drawing from paleontology, linguistics, anthropology, cognitive science, and especially neuropsychology. The properties of humankind's brain, culture, and cognition have coevolved in a tight iterative loop; the main event in human evolution has occurred at the cognitive level, however, mediating change at the anatomical and cultural levels. During the past two million years humans have passed through three major cognitive transitions, each of which has left the human mind with a new way (...)
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  • Hypnosis: Artichoke or onion?Richard St Jean - 1986 - Behavioral and Brain Sciences 9 (3):482-482.
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  • Hypnotic behavior: A social-psychological interpretation of amnesia, analgesia, and “trance logic”.Nicholas P. Spanos - 1986 - Behavioral and Brain Sciences 9 (3):449-467.
    This paper examines research on three hypnotic phenomena: suggested amnesia, suggested analgesia, and “trance logic.” For each case a social-psychological interpretation of hypnotic behavior as a voluntary response strategy is compared with the traditional special-process view that “good” hypnotic subjects have lost conscious control over suggestion-induced behavior. I conclude that it is inaccurate to describe hypnotically amnesic subjects as unable to recall the material they have been instructed to forget. Although amnesics present themselves as unable to remember, they in fact (...)
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  • Conceptual, experimental, and theoretical indeterminacies in research on semantic activation without conscious identification.Daniel Holender - 1986 - Behavioral and Brain Sciences 9 (1):50-66.
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  • Attentional orienting precedes conscious identification.Albrecht Werner Inhoff - 1986 - Behavioral and Brain Sciences 9 (1):35-35.
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  • The psychophysics of subliminal perception.Neil A. Macmillan - 1986 - Behavioral and Brain Sciences 9 (1):38-39.
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  • No eternal truth in GAPS.Endel Tulving - 1987 - Behavioral and Brain Sciences 10 (4):787.
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  • Putting consciousness in a box: Once more around the track.Joseph Glicksohn - 1993 - Behavioral and Brain Sciences 16 (2):404-404.
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  • On relativity of time and the causal status of consciousness.Ali Habibi & Michael S. Bendele - 1993 - Behavioral and Brain Sciences 16 (2):404-405.
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  • It's imitation, not mimesis.Michael Tomasello - 1993 - Behavioral and Brain Sciences 16 (4):771-772.
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  • Stages versus continuity.Christopher Wills - 1993 - Behavioral and Brain Sciences 16 (4):773-773.
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  • External representation: An issue for cognition.Jiajie Zhang - 1993 - Behavioral and Brain Sciences 16 (4):774-775.
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  • Apes have mimetic culture.Robert W. Mitchell & H. Lyn Miles - 1993 - Behavioral and Brain Sciences 16 (4):768-768.
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  • Memory, text and the Greek Revolution.Jocelyn Penny Small - 1993 - Behavioral and Brain Sciences 16 (4):769-770.
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  • From mimesis to synthesis.Jerome A. Feldman - 1993 - Behavioral and Brain Sciences 16 (4):759-759.
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  • Cultural transitions occur when mind parasites learn new tricks.Liane M. Gabora - 1993 - Behavioral and Brain Sciences 16 (4):760-761.
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  • Archaeology and the cognitive sciences in the study of human evolution.Philip G. Chase - 1993 - Behavioral and Brain Sciences 16 (4):752-753.
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  • Association and computation with cell assemblies.Frank der van Velde - 1995 - Behavioral and Brain Sciences 18 (4):643-644.
    The cell assembly is an important concept for cognitive psychology. Cognitive processing will to a large extent depend on the relations that can exist between different assemblies. A potential relation between assemblies can already be seen in the occurrence of (classical) conditioning. However, the resulting associations between assemblies only produce behavioristic processing or so-called regular computation. Higher-level cognitive abilities most likely result from nonregular computation. I discuss the possibility of this form of computation in terms of cell assemblies.
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  • Reverberations of Hebbian thinking.Josef P. Rauschecker - 1995 - Behavioral and Brain Sciences 18 (4):642-643.
    Cortical reverberations may induce synaptic changes that underlie developmental plasticity as well as long-term memory. They may be especially important for the consolidation of synaptic changes. Reverberations in cortical networks should have particular significance during development, when large numbers of new representations are formed. This includes the formation of representations across different sensory modalities.
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  • Where the adventure is.Elie Bienenstock & Stuart Geman - 1995 - Behavioral and Brain Sciences 18 (4):627-628.
    Interpreting the Miyashita et al. experiments in terms of a cellassembly representation does not adequately explain the performance of Miyashita's monkeys on novel stimuli. We will argue that the latter observations point to acompositionalrepresentation and suggest a dynamics involving rapid and reversible binding of distinct activity patterns.
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  • The Epistemology of Geometry I: the Problem of Exactness.Anne Newstead & Franklin James - 2010 - Proceedings of the Australasian Society for Cognitive Science 2009.
    We show how an epistemology informed by cognitive science promises to shed light on an ancient problem in the philosophy of mathematics: the problem of exactness. The problem of exactness arises because geometrical knowledge is thought to concern perfect geometrical forms, whereas the embodiment of such forms in the natural world may be imperfect. There thus arises an apparent mismatch between mathematical concepts and physical reality. We propose that the problem can be solved by emphasizing the ways in which the (...)
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  • Visual attention, conceptual content, and doing it right.Wayne Wu - 2008 - Mind 117 (468):1003-1033.
    Reflection on the fine-grained information required for visual guidance of action has suggested that visual content is non-conceptual. I argue that in a common type of visually guided action, namely the use of manipulable artefacts, vision has conceptual content. Specifically, I show that these actions require visual attention and that concepts are involved in directing attention. In acting with artefacts, there is a way of doing it right as determined by the artefact’s conventional use. Attention must reflect our understanding of (...)
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  • The evolution of foresight: What is mental time travel, and is it unique to humans?Thomas Suddendorf & Michael C. Corballis - 2007 - Behavioral and Brain Sciences 30 (3):299-313.
    In a dynamic world, mechanisms allowing prediction of future situations can provide a selective advantage. We suggest that memory systems differ in the degree of flexibility they offer for anticipatory behavior and put forward a corresponding taxonomy of prospection. The adaptive advantage of any memory system can only lie in what it contributes for future survival. The most flexible is episodic memory, which we suggest is part of a more general faculty of mental time travel that allows us not only (...)
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  • The meaning of “time” in episodic memory and mental time travel.William J. Friedman - 2007 - Behavioral and Brain Sciences 30 (3):323-323.
    The role of time in episodic memory and mental time travel is considered in light of findings on humans' temporal memory and anticipation. Time is not integral or uniform in memory for the past or anticipation of the future. The commonalities of episodic memory and anticipation require further study.
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  • Semantic activation without conscious identification in dichotic listening, parafoveal vision, and visual masking: A survey and appraisal.Daniel Holender - 1986 - Behavioral and Brain Sciences 9 (1):1-23.
    When the stored representation of the meaning of a stimulus is accessed through the processing of a sensory input it is maintained in an activated state for a certain amount of time that allows for further processing. This semantic activation is generally accompanied by conscious identification, which can be demonstrated by the ability of a person to perform discriminations on the basis of the meaning of the stimulus. The idea that a sensory input can give rise to semantic activation without (...)
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  • Retrieval of temporal structure at recall can occur automatically.Talya Sadeh & Morris Moscovitch - 2024 - Cognition 242 (C):105647.
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  • Above and beyond the concrete: The diverse representational substrates of the predictive brain.Michael Gilead, Yaacov Trope & Nira Liberman - 2020 - Behavioral and Brain Sciences 43:e121.
    In recent years, scientists have increasingly taken to investigate the predictive nature of cognition. We argue that prediction relies on abstraction, and thus theories of predictive cognition need an explicit theory of abstract representation. We propose such a theory of the abstract representational capacities that allow humans to transcend the “here-and-now.” Consistent with the predictive cognition literature, we suggest that the representational substrates of the mind are built as ahierarchy, ranging from the concrete to the abstract; however, we argue that (...)
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  • Verifying autobiographical facts.M. A. Conway - 1987 - Cognition 26 (1):39-58.
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  • Variation on a theme: Are the elements of episodic memory dissociable?Richard S. Lewis - 1986 - Behavioral and Brain Sciences 9 (3):567-568.
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  • Episodic and semantic memory: Where should we go from here?Endel Tulving - 1986 - Behavioral and Brain Sciences 9 (3):573-577.
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  • Conscious identification: Where do you draw the line?Stephen J. Lupker - 1986 - Behavioral and Brain Sciences 9 (1):37-38.
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  • Consciousness, causality and complementarity.Max Velmans - 1993 - Behavioral and Brain Sciences 16 (2):404-416.
    This reply to five continuing commentaries on my 1991 target article on “Is human information processing conscious” focuses on six related issues: 1) whether focal attentive processing replaces consciousness as a causal agent in third-person viewable human information processing, 2)whether consciousness can be dissociated from human information processing, 3) continuing disputes about definitions of "consciousness" and about what constitutes a “conscious process” , 4) how observer-relativity in psychology relates (and does not relate) to relativity in physics, 5) whether the first-person (...)
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  • Language equals mimesis plus speech.Aarre Laakso - 1993 - Behavioral and Brain Sciences 16 (4):765-766.
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  • Mathematics of Hebbian attractors.Morris W. Hirsch - 1995 - Behavioral and Brain Sciences 18 (4):633-634.
    The concept of an attractor in a mathematical dynamical system is reviewed. Emphasis is placed on the distinction between a cell assembly, the corresponding attractor, and the attractor dynamics. The biological significance of these entities is discussed, especially the question of whether the representation of the stimulus requires the full attractor dynamics, or merely the cell assembly as a set of reverberating neurons. Comparison is made to Freeman's study of dynamic patterns in olfaction.
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  • Additional tests of Amit's attractor neural networks.Ralph E. Hoffman - 1995 - Behavioral and Brain Sciences 18 (4):634-635.
    Further tests of Amit's model are indicated. One strategy is to use the apparent coding sparseness of the model to make predictions about coding sparseness in Miyashita's network. A second approach is to use memory overload to induce false positive responses in modules and biological systems. In closing, the importance of temporal coding and timing requirements in developing biologically plausible attractor networks is mentioned.
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  • A physiological basis for hippocampal involvement in coding temporally discontiguous events.Sam A. Deadwyler - 1985 - Behavioral and Brain Sciences 8 (3):500-501.
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  • Memory processing by the brain: Subregionalization, species-dependency, and network character.Hans J. Markowitsch - 1985 - Behavioral and Brain Sciences 8 (3):506-507.
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  • (1 other version)Précis of Origins of the modern mind: Three stages in the evolution of culture and cognition.Merlin Donald - 1993 - Behavioral and Brain Sciences 16 (4):737-748.
    This bold and brilliant book asks the ultimate question of the life sciences: How did the human mind acquire its incomparable power? In seeking the answer, Merlin Donald traces the evolution of human culture and cognition from primitive apes to the era of artificial intelligence, and presents an original theory of how the human mind evolved from its presymbolic form. In the emergence of modern human culture, Donald proposes, there were three radical transitions. During the first, our bipedal but still (...)
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  • Decisions and the evolution of memory: Multiple systems, multiple functions.Stanley B. Klein, Leda Cosmides, John Tooby & Sarah Chance - 2002 - Psychological Review 109 (2):306-329.
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  • Dichotomy: Strict or fuzzy.Ivan Šípoš & Jana Plichtová - 1986 - Behavioral and Brain Sciences 9 (3):571-572.
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  • The “special-process” controversy: What is at issue?John O. Beahrs - 1986 - Behavioral and Brain Sciences 9 (3):467-468.
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  • Approaches to consciousness: Psychophysics or philosophy?Richard Latto & John Campion - 1986 - Behavioral and Brain Sciences 9 (1):36-37.
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  • Processing of the unattended message during selective dichotic listening.R. Näätänen - 1986 - Behavioral and Brain Sciences 9 (1):43-44.
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  • “Pop science” versus understanding the emergence of the modern mind.C. Loring Brace - 1993 - Behavioral and Brain Sciences 16 (4):750-751.
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  • Taxing memory: Writing, memory, and conceptual change.David R. Olson - 1996 - Behavioral and Brain Sciences 19 (1):158-158.
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