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Noack, Hannes; Doeller, Christian F.; Born, Jan – Learning & Memory, 2021
Spatial memory comprises different representational systems that are sensitive to different environmental cues, like proximal landmarks or local boundaries. Here we examined how sleep affects the formation of a spatial representation integrating landmark-referenced and boundary-referenced representations. To this end, participants (n = 42) were…
Descriptors: Sleep, Memory, Spatial Ability, Cues
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He, Qiliang; Liu, Jancy Ling; Beveridge, Elizabeth H.; Eschapasse, Lou; Vargas, Vanesa; Brown, Thackery I. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2022
Valued-based decision-making has been studied for decades in myriad topics such as consumer spending and gambling, but very rarely in spatial navigation despite the link between the two being highly relevant to survival. Furthermore, how people integrate episodic memories, and what factors are related to the extent of memory integration in…
Descriptors: Memory, Decision Making, Spatial Ability, Navigation
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Antony, James W.; Stiver, Caroline A.; Graves, Kathryn N.; Osborne, Jarryd; Turk-Browne, Nicholas B.; Bennion, Kelly A. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2022
Theories of memory consolidation suggest that initially rich, vivid memories become more gist-like over time. However, it is unclear whether gist-like representations reflect a loss of detail through degradation or the blending of experiences into statistical averages, and whether the strength of these representations increases, decreases, or…
Descriptors: Memory, Behavioral Science Research, Undergraduate Students, Computer Simulation
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Lovegrove, Rhianna A.; Baumann, Oliver – Applied Cognitive Psychology, 2021
Spatial navigation is a fundamental cognitive function essential for daily life. Navigation skill assessment predominantly relies on self-reports, with varying accounts regarding their validity. The current study aimed to determine whether performance on an objective visual scene memory recognition ability task could serve as a valid predictor of…
Descriptors: Visual Stimuli, Memory, Accuracy, Predictor Variables
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Lei, Xuehui; Mou, Weimin – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2023
It is a prevailing theoretical claim that path integration is the primary means of developing global spatial representations. However, this claim is at odds with reported difficulty to develop global spatial representations of a multiscale environment using path integration. The current study tested a new hypothesis that locally similar but…
Descriptors: Cognitive Processes, Visual Perception, Spatial Ability, Memory
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Negen, James; Sandri, Angela; Lee, Sang Ah; Nardini, Marko – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
Large walls and other typical boundaries strongly influence neural activity related to navigation and the representations of spatial layouts. They are also major aids to reliable navigation behavior in young children and nonhuman animals. Is this because they are physical boundaries (barriers to movement), or because they present certain visual…
Descriptors: Spatial Ability, Memory, Navigation, Computer Simulation
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Brunyé, Tad T.; Smith, Amy M.; Hendel, Dalit; Gardony, Aaron L.; Martis, Shaina B.; Taylor, Holly A. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
Students learn more effectively through repeated retrieval of study materials relative to repeated exposure to the materials, a phenomenon known as the "testing effect" or "retrieval practice". This pattern has been demonstrated repeatedly with verbal materials, and more recently with visuospatial materials. The extent to which…
Descriptors: Spatial Ability, Memory, Transfer of Training, Maps
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Strickrodt, Marianne; Bülthoff, Heinrich H.; Meilinger, Tobias – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2019
Objects learned within single enclosed spaces (e.g., rooms) can be represented within a single reference frame. Contrarily, the representation of navigable spaces (multiple interconnected enclosed spaces) is less well understood. In this study we examined different levels of integration within memory (local, regional, global), when learning object…
Descriptors: Memory, Navigation, Spatial Ability, Simulated Environment
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Jordan, Jake T.; Tong, Yi; Pytte, Carolyn L. – Learning & Memory, 2022
Plasticity is a neural phenomenon in which experience induces long-lasting changes to neuronal circuits and is at the center of most neurobiological theories of learning and memory. However, too much plasticity is maladaptive and must be balanced with substrate stability. Area CA3 of the hippocampus provides such a balance via hemispheric…
Descriptors: Spatial Ability, Brain Hemisphere Functions, Memory, Learning Processes
Harris, Danielle; Logan, Tracy; Lowrie, Tom – Mathematics Education Research Group of Australasia, 2021
"Location and Transformation" skills are critical tools for navigating the world and establishing foundational steps for geometric reasoning associated with co-ordinate grids and the Cartesian plane. The contextual nature of using local landmarks to understand students' mental representation of large-scale space has the potential to…
Descriptors: Navigation, Geometry, Geographic Concepts, Geographic Location
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Brunec, Iva K.; Ozubko, Jason D.; Barense, Morgan D.; Moscovitch, Morris – Learning & Memory, 2017
Time and space represent two key aspects of episodic memories, forming the spatiotemporal context of events in a sequence. Little is known, however, about how temporal information, such as the duration and the order of particular events, are encoded into memory, and if it matters whether the memory representation is based on recollection or…
Descriptors: Recall (Psychology), Memory, Time, Spatial Ability
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Forloines, Martha R.; Reid, Meredith A.; Thompkins, Andie M.; Robinson, Jennifer L.; Katz, Jeffrey S. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2019
There are mixed results regarding the differentiation of neurofunctional correlates of spatial abilities. Previous studies employed complex environments or alternate memory tasks which could potentially add to inconsistencies across studies of navigation. To help elucidate the existing mixed findings, we conducted a study in a simplistic…
Descriptors: Computer Simulation, Brain Hemisphere Functions, Task Analysis, Cues
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Aumont, Étienne; Blanchette, Caroll-Ann; Bohbot, Veronique D.; West, Greg L. – Learning & Memory, 2019
When people navigate, they use strategies dependent on one of two memory systems. The hippocampus-based spatial strategy consists of using multiple landmarks to create a cognitive map of the environment. In contrast, the caudate nucleus-based response strategy is based on the memorization of a series of turns. Importantly, response learners…
Descriptors: Memory, Brain Hemisphere Functions, Memorization, Navigation
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Farran, E. K.; Formby, S.; Daniyal, F.; Holmes, T.; Van Herwegen, J. – Journal of Intellectual Disability Research, 2016
Background: Successful navigation is crucial to everyday life. Individuals with Williams syndrome (WS) have impaired spatial abilities. This includes a deficit in spatial navigation abilities such as learning the route from A to B. To-date, to determine whether participants attend to landmarks when learning a route, landmark recall tasks have been…
Descriptors: Genetic Disorders, Intellectual Disability, Spatial Ability, Navigation
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Ngo, Chi T.; Weisberg, Steven M.; Newcombe, Nora S.; Olson, Ingrid R. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2016
Although the hippocampus is implicated in both spatial navigation and associative memory, very little is known about whether individual differences in the 2 domains covary. People who prefer to navigate using a hippocampal-dependent place strategy may show better performance on associative memory tasks than those who prefer a caudate-dependent…
Descriptors: Individual Differences, Correlation, Navigation, Association (Psychology)
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