Results for 'spatial memory'

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  1. Reconsidering 'spatial memory' and the Morris water maze.Jacqueline Anne Sullivan - 2010 - Synthese 177 (2):261-283.
    The Morris water maze has been put forward in the philosophy of neuroscience as an example of an experimental arrangement that may be used to delineate the cognitive faculty of spatial memory (e.g., Craver and Darden, Theory and method in the neurosciences, University of Pittsburgh Press, Pittsburgh, 2001; Craver, Explaining the brain: Mechanisms and the mosaic unity of neuroscience, Oxford University Press, Oxford, 2007). However, in the experimental and review literature on the water maze throughout the history of (...)
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  2. Spatial memory: how egocentric and allocentric combine.Neil Burgess - 2006 - Trends in Cognitive Sciences 10 (12):551-557.
  3.  8
    Spatial Memory and Blindness: The Role of Visual Loss on the Exploration and Memorization of Spatialized Sounds.Walter Setti, Luigi F. Cuturi, Elena Cocchi & Monica Gori - 2022 - Frontiers in Psychology 13.
    Spatial memory relies on encoding, storing, and retrieval of knowledge about objects’ positions in their surrounding environment. Blind people have to rely on sensory modalities other than vision to memorize items that are spatially displaced, however, to date, very little is known about the influence of early visual deprivation on a person’s ability to remember and process sound locations. To fill this gap, we tested sighted and congenitally blind adults and adolescents in an audio-spatial memory task (...)
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  4.  22
    Spatial memory in foraging games.Bryan E. Kerster, Theo Rhodes & Christopher T. Kello - 2016 - Cognition 148:85-96.
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  5. Spatial memory for highly familiar environments.Julia Frankenstein, Tobias Meilinger, Betty J. Mohler & Heinrich H. Bülthoff - 2009 - In N. A. Taatgen & H. van Rijn (eds.), Proceedings of the 31st Annual Conference of the Cognitive Science Society.
     
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  6.  12
    Rat spatial memory: Both working and reference memory are resistant to retroactive interference.Khanh Tran & William W. Beatty - 1985 - Bulletin of the Psychonomic Society 23 (1):78-80.
  7.  13
    Spatial Memory: Variations on Classical Themes.David F. Bell - 2016 - Substance 45 (2):27-38.
    In March 2012, Joshua Foer presented a TED Talk to a mesmerized audience. As he began, Foer asked the audience members to close their eyes, and he proceeded to describe a scenario in which a series of striking images appeared as he talked his spectators through various architectural spaces in a house they were to imagine as their own. First, a group of nude bicyclists materialized at the front door, crashing before the very eyes of the bemused beholders, sending bicycle (...)
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  8. Spatial memory in clarks nutcrackers.Ac Kamil & Rp Balda - 1986 - Bulletin of the Psychonomic Society 24 (5):321-321.
     
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  9.  14
    The Development of Spatial Memory Analyzed by Means of Ecological Walking Task.Pierpaolo Sorrentino, Anna Lardone, Matteo Pesoli, Marianna Liparoti, Simone Montuori, Giuseppe Curcio, Giuseppe Sorrentino, Laura Mandolesi & Francesca Foti - 2019 - Frontiers in Psychology 10.
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  10.  24
    Geometric determinants of human spatial memory.Tom Hartley, Iris Trinkler & Neil Burgess - 2004 - Cognition 94 (1):39-75.
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  11.  28
    Anxiety and visual-spatial memory updating in young children: An investigation using emotional facial expressions.Laura Visu-Petra, Ioana Ţincaş, Lavinia Cheie & Oana Benga - 2010 - Cognition and Emotion 24 (2):223-240.
  12. Retroactive interference in human spatial memory.D. G. Elmes & S. S. Svalina - 1986 - Bulletin of the Psychonomic Society 24 (5):330-330.
  13. Preliminary Studies of Spatial Memory in Captive African Elephants.R. H. I. Dale & M. R. da HaganShyan - 1992 - Bulletin of the Psychonomic Society 30 (6):486-486.
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  14. Development of spatial memory in the human infant.P. Mangan & L. Nadel - 1990 - Bulletin of the Psychonomic Society 28 (6):513-514.
     
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  15. The organization of human spatial memory and implications for route planning and navigation.Jan M. Wiener & Hanspeter A. Mallot - 2002 - Cognition 13 (3):208-217.
     
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  16.  11
    Relational but not spatial memory: The task at hand.Elisabeth A. Murray - 1994 - Behavioral and Brain Sciences 17 (3):489-490.
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  17.  11
    Egocentric and Allocentric Spatial Memory in Korsakoff’s Amnesia.Gabriele Janzen, Claudette J. M. van Roij, Joukje M. Oosterman & Roy P. C. Kessels - 2020 - Frontiers in Human Neuroscience 14.
  18.  18
    Task dependent spatial memory across saccades.Keith S. Karn, Joel Lachter, Per Møller & Mary Hayhoe - 1994 - Behavioral and Brain Sciences 17 (2):267-268.
  19.  20
    Age differences in visual-spatial memory performance: Do children really out-perform adults when playing Concentration?Lynne Baker-Ward & Peter A. Ornstein - 1988 - Bulletin of the Psychonomic Society 26 (4):331-332.
  20.  13
    The challenge of neuropsychological assessment of visual/visuo-spatial memory: A critical, historical review, and lessons for the present and future.Unai Diaz-Orueta, Bronagh M. Rogers, Alberto Blanco-Campal & Teresa Burke - 2022 - Frontiers in Psychology 13.
    A proliferation of tests exists for the assessment of auditory-verbal memory processes. However, from a clinical practice perspective, the situation is less clear when it comes to the ready availability of reliable and valid tests for the evaluation of visual/visuo-spatial memory processes. While, at face value, there appear to be a wide range of available tests of visual/visuo-spatial memory, utilizing different types of materials and assessment strategies, a number of criticisms have been, and arguably should (...)
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  21. Discovering mechanisms in neurobiology: The case of spatial memory.Carl F. Craver & Lindley Darden - 2001 - In Peter McLaughlin, Peter Machamer & Rick Grush (eds.), Theory and Method in the Neurosciences. Pittsburgh University Press. pp. 112--137.
  22.  55
    Stepping Into a Map: Initial Heading Direction Influences Spatial Memory Flexibility.Stephanie A. Gagnon, Tad T. Brunyé, Aaron Gardony, Matthijs L. Noordzij, Caroline R. Mahoney & Holly A. Taylor - 2014 - Cognitive Science 38 (2):275-302.
    Learning a novel environment involves integrating first-person perceptual and motoric experiences with developing knowledge about the overall structure of the surroundings. The present experiments provide insights into the parallel development of these egocentric and allocentric memories by intentionally conflicting body- and world-centered frames of reference during learning, and measuring outcomes via online and offline measures. Results of two experiments demonstrate faster learning and increased memory flexibility following route perspective reading (Experiment 1) and virtual navigation (Experiment 2) when participants begin (...)
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  23.  29
    Remembering the past and imagining the future: A neural model of spatial memory and imagery.Patrick Byrne, Suzanna Becker & Neil Burgess - 2007 - Psychological Review 114 (2):340-375.
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  24.  13
    Episodic memory processes modulate how schema knowledge is used in spatial memory decisions.Michelle M. Ramey, John M. Henderson & Andrew P. Yonelinas - 2022 - Cognition 225 (C):105111.
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  25.  5
    The Role of Virtual Reality in Screening, Diagnosing, and Rehabilitating Spatial Memory Deficits.Miles Jonson, Sinziana Avramescu, Derek Chen & Fahad Alam - 2021 - Frontiers in Human Neuroscience 15.
    Impairment of spatial memory, including an inability to recall previous locations and navigate the world, is often one of the first signs of functional disability on the road to cognitive impairment. While there are many screening and diagnostic tools which attempt to measure spatial memory ability, they are often not representative of real-life situations and can therefore lack applicability. One potential solution to this problem involves the use of virtual reality, which immerses individuals in a virtually-simulated (...)
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  26.  17
    Language, space, and the development of cognitive flexibility in humans: the case of two spatial memory tasks.L. Hermer-Vazquez - 2001 - Cognition 79 (3):263-299.
  27.  18
    Not all those who wander are lost: Spatial exploration patterns and their relationship to gender and spatial memory.Kyle T. Gagnon, Brandon J. Thomas, Ascher Munion, Sarah H. Creem-Regehr, Elizabeth A. Cashdan & Jeanine K. Stefanucci - 2018 - Cognition 180:108-117.
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  28.  41
    Orientational manoeuvres in the dark: dissociating allocentric and egocentric influences on spatial memory.N. Burgess, H. Spiers & E. PalEologou - 2004 - Cognition 94 (2):149-166.
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  29.  61
    Differential developmental trajectories for egocentric, environmental and intrinsic frames of reference in spatial memory.M. Nardini, N. Burgess, K. BrecKenridge & J. Atkinson - 2006 - Cognition 101 (1):153-172.
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  30.  25
    Reference frames during the acquisition and development of spatial memories.Jonathan W. Kelly & Timothy P. McNamara - 2010 - Cognition 116 (3):409-420.
  31.  20
    Minds in motion in memory: Enhanced spatial memory driven by the perceived animacy of simple shapes.Benjamin van Buren & Brian J. Scholl - 2017 - Cognition 163 (C):87-92.
    Even simple geometric shapes are seen as animate and goal-directed when they move in certain ways. Previous research has revealed a great deal about the cues that elicit such percepts, but much less about the consequences for other aspects of perception and cognition. Here we explored whether simple shapes that are perceived as animate and goal-directed are prioritized in memory. We investigated this by asking whether subjects better remember the locations of displays that are seen as animate vs. inanimate, (...)
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  32.  10
    Patterns of preserved and impaired spatial memory in a case of developmental amnesia.R. Shayna Rosenbaum, Benjamin N. Cassidy & Katherine A. Herdman - 2015 - Frontiers in Human Neuroscience 9.
  33.  16
    Isolating observer-based reference directions in human spatial memory: Head, body, and the self-to-array axis.Adam Richardson David Waller, Yvonne Lippa - 2008 - Cognition 106 (1):157.
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  34.  32
    Isolating observer-based reference directions in human spatial memory: Head, body, and the self-to-array axis.David Waller, Yvonne Lippa & Adam Richardson - 2008 - Cognition 106 (1):157-183.
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  35.  24
    Cross-sensory transfer of reference frames in spatial memory.Jonathan W. Kelly & Marios N. Avraamides - 2011 - Cognition 118 (3):444-450.
  36.  33
    Reference directions and reference objects in spatial memory of a briefly viewed layout.Weimin Mou, Chengli Xiao & Timothy P. McNamara - 2008 - Cognition 108 (1):136-154.
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  37.  17
    Attention, spatial representation, and visual neglect: Simulating emergent attention and spatial memory in the selective attention for identification model (SAIM).Dietmar Heinke & Glyn W. Humphreys - 2003 - Psychological Review 110 (1):29-87.
  38.  21
    Sleep deprivation does not affect spatial memory in rats.Anthony M. Dodge & William W. Beatty - 1980 - Bulletin of the Psychonomic Society 16 (5):408-409.
  39.  22
    Intraretrosplenial grafts of cholinergic neurons and spatial memory function.Ying J. Li & Walter C. Low - 1995 - Behavioral and Brain Sciences 18 (1):61-62.
    The transplantation of cholinergic neurons into the hippocampal formation has been well characterized. We describe our studies on the effects of cholinergic transplants in the retrosplenial cortex. These transplants were capable of ameliorating spatial navigation deficits in rats with septohippocampal lesions. In addition, we provide evidence for the modulation of transplanted neurons by the host brain.
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  40.  21
    Geometric cues, reference frames, and the equivalence of experienced-aligned and novel-aligned views in human spatial memory.Jonathan W. Kelly, Lori A. Sjolund & Bradley R. Sturz - 2013 - Cognition 126 (3):459-474.
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  41.  8
    Methods of evaluating performance on spatial memory tasks.Matthew J. Sharps & Eugene S. Gollin - 1986 - Bulletin of the Psychonomic Society 24 (1):18-20.
  42. Nonlinear effects of spatial connectedness implicate hierarchically structured representations in visual working memory.Błażej Skrzypulec & Adam Chuderski - 2020 - Journal of Memory and Language 113:104124.
    Five experiments investigated the role of spatial connectedness between a pair of objects presented in the change detection task for the actual capacity of visual working memory (VWM) in healthy young adults (total N = 405). Three experiments yielded a surprising nonlinear relationship between the proportion of pair-wise connected objects and capacity, with the highest capacity observed for homogenous displays, when either all objects were connected or disjointed. A drop in capacity, ranging from an average of a quarter (...)
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  43.  7
    Linear Spatial–Numeric Associations Aid Memory for Single Numbers.John Opfer, Dan Kim, Christopher J. Young & Francesca Marciani - 2019 - Frontiers in Psychology 10.
    Memory for numbers improves with age. One source of this improvement may be learning linear spatial-numeric associations, but previous evidence for this hypothesis likely confounded memory span with quality of numerical magnitude representations and failed to distinguish spatial-numeric mappings from other numeric abilities, such as counting or number word-cardinality mapping. To obviate the influence of memory span on numerical memory, we examined 39 3- to 5-year-olds’ ability to recall one spontaneously produced number (1-20) after (...)
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  44.  24
    Reduced memory for the spatial and temporal context of unpleasant words.Richard J. Maddock & Scott T. Frein - 2009 - Cognition and Emotion 23 (1):96-117.
    Emotional stimuli are consistently better remembered than neutral stimuli. However, the reported effects of emotional stimuli on source memory are less consistent. In four experiments, we examined spatial and temporal source memory and free recall for emotional words previously studied in an fMRI experiment. In the fMRI experiment, the unpleasant but not the pleasant words were shown to activate the amygdala. In the experiments reported here, spatial and temporal source memory were reduced for the unpleasant (...)
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  45.  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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  46.  8
    Spatial But Not Oculomotor Information Biases Perceptual Memory: Evidence From Face Perception and Cognitive Modeling.Andrea L. Wantz, Janek S. Lobmaier, Fred W. Mast & Walter Senn - 2017 - Cognitive Science 41 (6):1533-1554.
    Recent research put forward the hypothesis that eye movements are integrated in memory representations and are reactivated when later recalled. However, “looking back to nothing” during recall might be a consequence of spatial memory retrieval. Here, we aimed at distinguishing between the effect of spatial and oculomotor information on perceptual memory. Participants’ task was to judge whether a morph looked rather like the first or second previously presented face. Crucially, faces and morphs were presented in (...)
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  47.  25
    Spatial navigation, episodic memory, episodic future thinking, and theory of mind in children with autism spectrum disorder: evidence for impairments in mental simulation?Sophie E. Lind, Dermot M. Bowler & Jacob Raber - 2014 - Frontiers in Psychology 5:113592.
    This study explored spatial navigation alongside several other cognitive abilities that are thought to share common underlying neurocognitive mechanisms (e.g., the capacity for self-projection, scene construction, or mental simulation), and which we hypothesised may be impaired in autism spectrum disorder (ASD). Twenty intellectually high-functioning children with ASD (with a mean age of ~8 years) were compared to 20 sex, age, IQ, and language ability matched typically developing children on a series of tasks to assess spatial navigation, episodic (...), episodic future thinking (also known as episodic foresight or prospection), theory of mind, relational memory, and central coherence. This is the first study to explore these abilities concurrently within the same sample. Spatial navigation was assessed using the “memory island” task, which involves finding objects within a realistic, computer simulated, three-dimensional environment. Episodic memory and episodic future thinking were assessed using a past and future event description task. Theory of mind was assessed using the “animations” task, in which children were asked to describe the interactions between two animated triangles. Relational memory was assessed using a recognition task involving memory for items (line drawings), patterned backgrounds, or combinations of items and backgrounds. Central coherence was assessed by exploring differences in performance across segmented and unsegmented versions of block design. Children with ASD were found to show impairments in spatial navigation, episodic memory, episodic future thinking, and central coherence, but not theory of mind or relational memory. Among children with ASD, spatial navigation was found to be significantly negatively related to number of repetitive behaviours. In other words, children who showed more repetitive behaviours showed poorer spatial navigation. The theoretical and practical implications of the results are discussed. (shrink)
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  48.  83
    Spatial coding of ordinal information in short- and long-term memory.Vã©Ronique Ginsburg & Wim Gevers - 2015 - Frontiers in Human Neuroscience 9.
  49.  22
    Cue Effects on Memory for Location When Navigating Spatial Displays.Sylvia Fitting, Douglas H. Wedell & Gary L. Allen - 2009 - Cognitive Science 33 (7):1267-1300.
    Participants maneuvered a rat image through a circular region on the computer screen to find a hidden target platform, blending aspects of two well-known spatial tasks. Like the Morris water maze task, participants first experienced a series of learning trials before having to navigate to the hidden target platform from different locations and orientations. Like the dot-location task, they determined the location of a position within a two-dimensional circular region. This procedure provided a way to examine how the number (...)
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  50.  25
    Spatialization in working memory is related to literacy and reading direction: Culture “literarily” directs our thoughts.Alessandro Guida, Ahmed M. Megreya, Magali Lavielle-Guida, Yvonnick Noël, Fabien Mathy, Jean-Philippe van Dijck & Elger Abrahamse - 2018 - Cognition 175 (C):96-100.
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