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Koch, Griffin E.; Akpan, Essang; Coutanche, Marc N. – Learning & Memory, 2020
The features of an image can be represented at multiple levels--from its low-level visual properties to high-level meaning. What drives some images to be memorable while others are forgettable? We address this question across two behavioral experiments. In the first, different layers of a convolutional neural network (CNN), which represent…
Descriptors: Prediction, Memory, Brain Hemisphere Functions, Task Analysis
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Langille, Jesse J.; Ginzberg, Keren; Sossin, Wayne S. – Learning & Memory, 2019
In neurons, mRNAs can be repressed postinitiation and assembled into granules enabling the transport and later, regulated reactivation of the paused mRNAs. It has been suggested that a large percentage of transcripts in neuronal processes are stored in these stalled polysomes. Given this, it is predicted that nascent peptides should be abundant in…
Descriptors: Brain Hemisphere Functions, Genetics, Biochemistry, Prediction
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Zotow, Ewa; Bisby, James A.; Burgess, Neil – Learning & Memory, 2020
An essential feature of episodic memory is the ability to recall the multiple elements relating to one event from the multitude of elements relating to other, potentially similar events. Hippocampal pattern separation is thought to play a fundamental role in this process, by orthogonalizing the representations of overlapping events during…
Descriptors: Memory, Brain Hemisphere Functions, Interference (Learning), Behavior Patterns
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Haque, Rafi U.; Manzanares, Cecelia M.; Brown, Lavonda N.; Pongos, Alvince L.; Lah, James J.; Clifford, Gari D.; Levey, Allan I. – Learning & Memory, 2019
The entorhinal-hippocampal circuit is one of the earliest sites of cortical pathology in Alzheimer's disease (AD). Visuospatial memory paradigms that are mediated by the entorhinal-hippocampal circuit may offer a means to detect memory impairment during the early stages of AD. In this study, we developed a 4-min visuospatial memory paradigm called…
Descriptors: Alzheimers Disease, Memory, Visual Perception, Spatial Ability
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Wigestrand, Mattis B.; Schiff, Hillary C.; Fyhn, Marianne; LeDoux, Joseph E.; Sears, Robert M. – Learning & Memory, 2017
Distinguishing threatening from nonthreatening stimuli is essential for survival and stimulus generalization is a hallmark of anxiety disorders. While auditory threat learning produces long-lasting plasticity in primary auditory cortex (Au1), it is not clear whether such Au1 plasticity regulates memory specificity or generalization. We used…
Descriptors: Memory, Brain Hemisphere Functions, Stimuli, Generalization
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Cohen, Justine E.; Ross, Robert S.; Stern, Chantal E. – Learning & Memory, 2018
Previous research has demonstrated that areas in the medial temporal lobe and prefrontal cortex (PFC) show increased activation during retrieval of overlapping sequences. In this study, we designed a task in which degree of overlap varied between conditions in order to parse out the contributions of hippocampal and prefrontal subregions as overlap…
Descriptors: Prediction, Brain Hemisphere Functions, Visual Stimuli, Diagnostic Tests
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Bernier, Brian E.; Lacagnina, Anthony F.; Drew, Michael R. – Learning & Memory, 2015
Studies on the behavioral mechanisms underlying contextual fear conditioning (CFC) have demonstrated the importance of preshock context exposure in the formation of aversive context memories. However, there has been comparatively little investigation of the effects of context exposure immediately after the shock. Some models predict that…
Descriptors: Fear, Learning Processes, Brain Hemisphere Functions, Memory
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Chen, Janice; Olsen, Rosanna K.; Preston, Alison R.; Glover, Gary H.; Wagner, Anthony D. – Learning & Memory, 2011
Hippocampal subfields CA3 and CA1 are hypothesized to differentially support the generation of associative predictions and the detection of associative mismatches, respectively. Using high-resolution functional MRI, we examined hippocampal subfield activation during associative retrieval and during subsequent comparisons of memory to matching or…
Descriptors: Prediction, Memory, Associative Learning, Brain Hemisphere Functions
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Mattfeld, Aaron T.; Gluck, Mark A.; Stark, Craig E. L. – Learning & Memory, 2011
The goal of the present study was to elucidate the role of the human striatum in learning via reward and punishment during an associative learning task. Previous studies have identified the striatum as a critical component in the neural circuitry of reward-related learning. It remains unclear, however, under what task conditions, and to what…
Descriptors: Feedback (Response), Associative Learning, Specialization, Rewards
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Holtzman-Assif, Orit; Laurent, Vincent; Westbrook, R. Frederick – Learning & Memory, 2010
Three experiments used rats to investigate the role of dopamine activity in learning to inhibit conditioned fear responses (freezing) in extinction. In Experiment 1, rats systemically injected with the D2 dopamine antagonist, haloperidol, froze more across multiple extinction sessions and on a drug-free retention test than control rats. In…
Descriptors: Animals, Fear, Biochemistry, Conditioning
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Lee, Hongjoo J.; Gallagher, Michela; Holland, Peter C. – Learning & Memory, 2010
The central amygdala nucleus (CeA) plays a critical role in cognitive processes beyond fear conditioning. For example, intact CeA function is essential for enhancing attention to conditioned stimuli (CSs). Furthermore, this enhanced attention depends on the CeA's connections to the nigrostriatal system. In the current study, we examined the role…
Descriptors: Testing, Conditioning, Prediction, Cognitive Processes
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Cole, Sindy; McNally, Gavan P. – Learning & Memory, 2009
Pavlovian fear conditioning is not a unitary process. At the neurobiological level multiple brain regions and neurotransmitters contribute to fear learning. At the behavioral level many variables contribute to fear learning including the physical salience of the events being learned about, the direction and magnitude of predictive error, and the…
Descriptors: Classical Conditioning, Parent Child Relationship, Fear, Learning Processes
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Lee, Jong Won; Kim, Woon Ryoung; Sun, Woong; Jung, Min Whan – Learning & Memory, 2009
Humans and animals form internal representations of external space based on their own body movement (dead reckoning) as well as external landmarks. It is poorly understood, however, how different types of information are integrated to form a unified representation of external space. To examine the role of dentate gyrus (DG) in this process, we…
Descriptors: Animals, Memory, Spatial Ability, Brain Hemisphere Functions
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Okado, Yoko; Stark, Craig E. L. – Learning & Memory, 2005
False memories are often demonstrated using the misinformation paradigm, in which a person's recollection of a witnessed event is altered after exposure to misinformation about the event. The neural basis of this phenomenon, however, remains unknown. The authors used fMRI to investigate encoding processes during the viewing of an event and…
Descriptors: Neurolinguistics, Memory, Coding, Knowledge Representation