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Derouet, Joffrey; Droit-Volet, Sylvie; Doyère, Valérie – Learning & Memory, 2021
The present study evaluates the updating of long-term memory for duration. After learning a temporal discrimination associating one lever with a standard duration (4 sec) and another lever with both a shorter (1-sec) and a longer (16-sec) duration, rats underwent a single session for learning a new standard duration. The temporal generalization…
Descriptors: Memory, Cognitive Processes, Time Factors (Learning), Task Analysis
Hatakeyama, Taichi; Sugita, Manami; Yamada, Kazuo; Ichitani, Yukio – Learning & Memory, 2018
Temporal order memory was analyzed using a spontaneous object recognition (SOR) paradigm in rats. In SOR, animals were allowed to explore freely two or five different objects sequentially in the sample phase, and then, two different objects shown in the sample phase were simultaneously presented, and exploration time of object shown earlier…
Descriptors: Memory, Animals, Recognition (Psychology), Time
van de Ven, Vincent; Kochs, Sarah; Smulders, Fren; De Weerd, Peter – Learning & Memory, 2017
The extent to which time is represented in memory remains underinvestigated. We designed a time paired associate task (TPAT) in which participants implicitly learned cue-time-target associations between cue-target pairs and specific cue-target intervals. During subsequent memory testing, participants showed increased accuracy of identifying…
Descriptors: Intervals, Time, Memory, Cues
Pezze, Marie A.; Marshall, Hayley J.; Fone, Kevin C. F.; Cassaday, Helen J. – Learning & Memory, 2017
Previous in vivo electrophysiological studies suggest that the anterior cingulate cortex (ACgx) is an important substrate of novel object recognition (NOR) memory. However, intervention studies are needed to confirm this conclusion and permanent lesion studies cannot distinguish effects on encoding and retrieval. The interval between encoding and…
Descriptors: Memory, Recall (Psychology), Retention (Psychology), Recognition (Psychology)
Yang, Jiongjiong; Zhan, Lexia; Wang, Yingying; Du, Xiaoya; Zhou, Wenxi; Ning, Xueling; Sun, Qing; Moscovitch, Morris – Learning & Memory, 2016
Are associative memories forgotten more quickly than item memories, and does the level of original learning differentially influence forgetting rates? In this study, we addressed these questions by having participants learn single words and word pairs once (Experiment 1), three times (Experiment 2), and six times (Experiment 3) in a massed…
Descriptors: Learning Experience, Memory, Associative Learning, Recognition (Psychology)
Zhang, Wen-Hua; Williams, Ziv M. – Learning & Memory, 2015
Once a memory has formed, it is thought to undergo a gradual transition within the brain from short- to long-term storage. This putative process, however, also poses a unique problem to the memory system in that the same learned items must also be retrieved across broadly varying time scales. Here, we find that neurons in the ventrolateral…
Descriptors: Memory, Brain Hemisphere Functions, Animals, Intervals
Lynch, Joseph, III; Cullen, Patrick K.; Jasnow, Aaron M.; Riccio, David C. – Learning & Memory, 2013
In previous studies using male rodents, context change disrupted a fear response at a short, but not a long, retention interval. Here, we examined the effects of context changes on fear responses as a function of time in male and female rats. Males displayed context discrimination at all intervals, whereas females exhibited generalization by 5 d.…
Descriptors: Gender Differences, Generalization, Fear, Retention (Psychology)
Muhia, Mary; Willadt, Silvia; Yee, Benjamin K.; Feldon, Joram; Paterna, Jean-Charles; Schwendener, Severin; Vogt, Kaspar; Kennedy, Mary B.; Knuesel, Irene – Learning & Memory, 2012
The synaptic Ras/Rap-GTPase-activating protein (SynGAP1) plays a unique role in regulating specific downstream intracellular events in response to N-methyl-D-aspartate receptor (NMDAR) activation. Constitutive heterozygous loss of SynGAP1 disrupts NMDAR-mediated physiological and behavioral processes, but the disruptions might be of developmental…
Descriptors: Intervals, Recognition (Psychology), Field Tests, Integrity
Sajikumar, Sreedharan; Li, Qin; Abraham, Wickliffe C.; Xiao, Zhi Cheng – Learning & Memory, 2009
Activity-dependent changes in synaptic strength such as long-term potentiation (LTP) and long-term depression (LTD) are considered to be cellular mechanisms underlying learning and memory. Strengthening of a synapse for a few seconds or minutes is termed short-term potentiation (STP) and is normally unable to take part in the processes of synaptic…
Descriptors: Depression (Psychology), Animals, Memory, Stimulation
Gabriele, Amanda; Setlow, Barry; Packard, Mark G. – Learning & Memory, 2009
Rats were trained to run a straight-alley maze for an oral cocaine or sucrose vehicle solution reward, followed by either response or latent extinction training procedures that engage neuroanatomically dissociable "habit" and "cognitive" memory systems, respectively. In the response extinction condition, rats performed a runway approach response…
Descriptors: Cocaine, Memory, Animals, Reinforcement
Farovik, Anja; Dupont, Laura M.; Eichenbaum, Howard – Learning & Memory, 2010
Previous studies have suggested that dorsal hippocampal areas CA3 and CA1 are both involved in representing sequences of events that compose unique episodes. However, it is uncertain whether the contribution of CA3 is restricted to spatial information, and it is unclear whether CA1 encodes order per se or contributes by an active maintenance of…
Descriptors: Statistical Bias, Intervals, Mathematical Models, Memory
Kimura, Ryoichi; Silva, Alcino J.; Ohno, Masuo – Learning & Memory, 2008
Accumulating evidence indicates the key role of [alpha]-calcium/calmodulin-dependent protein kinase II ([alpha]CaMKII) in synaptic plasticity and learning, but it remains unclear how this kinase participates in the processing of memory extinction. Here, we investigated the mechanism by which [alpha]CaMKII may mediate extinction by using…
Descriptors: Intervals, Memory, Brain, Fear
Yoon, Taejib; Okada, Jeffrey; Jung, Min W.; Kim, Jeansok J. – Learning & Memory, 2008
Both the medial prefrontal cortex (mPFC) and hippocampus are implicated in working memory tasks in rodents. Specifically, it has been hypothesized that the mPFC is primarily engaged in the temporary storage and processing of information lasting from a subsecond to several seconds, while the hippocampal function becomes more critical as the working…
Descriptors: Intervals, Memory, Brain Hemisphere Functions, Brain
McNally, Gavan P.; Augustyn, Katarzyna A.; Richardson, Rick – Learning & Memory, 2008
Four experiments studied the role of GABA[subscript A] receptors in the temporal dynamics of memory retention. Memory for an active avoidance response was a nonmonotonic function of the retention interval. When rats were tested shortly (2 min) or some time (24 h) after training, retention was excellent, but when they were tested at intermediate…
Descriptors: Intervals, Memory, Brain, Neurological Organization
Pu, Zhenwei; Krugers, Harm J.; Joels, Marian – Learning & Memory, 2007
Previous experiments in the hippocampal CA1 area have shown that corticosterone can facilitate long-term potentiation (LTP) in a rapid non-genomic fashion, while the same hormone suppresses LTP that is induced several hours after hormone application. Here, we elaborated on this finding by examining whether corticosterone exerts opposite effects on…
Descriptors: Brain, Physiology, Biochemistry, Memory
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