NotesFAQContact Us
Collection
Advanced
Search Tips
Showing all 12 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
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
Peer reviewed Peer reviewed
Direct linkDirect link
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
Peer reviewed Peer reviewed
Direct linkDirect link
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
Peer reviewed Peer reviewed
Direct linkDirect link
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
Peer reviewed Peer reviewed
Direct linkDirect link
Kosaki, Yutaka; Poulter, Steven L.; Austen, Joe M.; McGregor, Anthony – Learning & Memory, 2015
In three experiments, the nature of the interaction between multiple memory systems in rats solving a variation of a spatial task in the water maze was investigated. Throughout training rats were able to find a submerged platform at a fixed distance and direction from an intramaze landmark by learning a landmark-goal vector. Extramaze cues were…
Descriptors: Neurological Impairments, Animals, Navigation, Spatial Ability
Peer reviewed Peer reviewed
Direct linkDirect link
Guo, Chao; Du, Yifei; Yuan, Deliang; Li, Meixia; Gong, Haiyun; Gong, Zhefeng; Liu, Li – Learning & Memory, 2015
Orientation, the spatial organization of animal behavior, is an essential faculty of animals. Bacteria and lower animals such as insects exhibit taxis, innate orientation behavior, directly toward or away from a directional cue. Organisms can also orient themselves at a specific angle relative to the cues. In this study, using…
Descriptors: Conditioning, Entomology, Cues, Visual Perception
Peer reviewed Peer reviewed
Direct linkDirect link
Schmidt, Brandy; Papale, Andrew; Redish, A. David; Markus, Etan J. – Learning & Memory, 2013
Navigation can be accomplished through multiple decision-making strategies, using different information-processing computations. A well-studied dichotomy in these decision-making strategies compares hippocampal-dependent "place" and dorsal-lateral striatal dependent "response" strategies. A place strategy depends on the ability to flexibly respond…
Descriptors: Navigation, Decision Making, Animals, Brain
Peer reviewed Peer reviewed
Direct linkDirect link
Gardner, Robert S.; Uttaro, Michael R.; Fleming, Samantha E.; Suarez, Daniel F.; Ascoli, Giorgio A.; Dumas, Theodore C. – Learning & Memory, 2013
Learning by repetition engages distinct cognitive strategies whose contributions are adjusted with experience. Early in learning, performance relies upon flexible, attentive strategies. With extended practice, inflexible, automatic strategies emerge. This transition is thought fundamental to habit formation and applies to human and animal…
Descriptors: Short Term Memory, Learning Strategies, Spatial Ability, Navigation
Peer reviewed Peer reviewed
Direct linkDirect link
Youngstrom, Isaac A.; Strowbridge, Ben W. – Learning & Memory, 2012
Because many different sensory modalities contribute to spatial learning in rodents, it has been difficult to determine whether spatial navigation can be guided solely by visual cues. Rodents moving within physical environments with visual cues engage a variety of nonvisual sensory systems that cannot be easily inhibited without lesioning brain…
Descriptors: Animals, Navigation, Spatial Ability, Computer Simulation
Peer reviewed Peer reviewed
Direct linkDirect link
Diviney, Mairead; Fey, Dirk; Commins, Sean – Learning & Memory, 2013
Learning to navigate toward a goal is an essential skill. Place learning is thought to rely on the ability of animals to associate the location of a goal with surrounding environmental cues. Using the Morris water maze, a task popularly used to examine place learning, we demonstrate that distal cues provide animals with distance and directional…
Descriptors: Cues, Learning Processes, Task Analysis, Animals
Peer reviewed Peer reviewed
Direct linkDirect link
Ramos, Juan M. J. – Learning & Memory, 2009
In a previous study we showed a temporally graded retrograde amnesia after hippocampal lesions when rats learned a spatial reference memory task in which two types of signals simultaneously indicated the goal arm (shape of the experimental room and extramaze landmarks). To investigate the effect that the navigational demands of the task have on…
Descriptors: Memory, Spatial Ability, Animals, Navigation
Peer reviewed Peer reviewed
Direct linkDirect link
Samsonovich, Alexei V.; Ascoli, Giorgio A. – Learning & Memory, 2005
The goal of this work is to extend the theoretical understanding of the relationship between hippocampal spatial and memory functions to the level of neurophysiological mechanisms underlying spatial navigation and episodic memory retrieval. The proposed unifying theory describes both phenomena within a unique framework, as based on one and the…
Descriptors: Associative Learning, Neurological Organization, Networks, Physiology