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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)
Jeneson, Annette; Squire, Larry R. – Learning & Memory, 2012
Early studies of memory-impaired patients with medial temporal lobe (MTL) damage led to the view that the hippocampus and related MTL structures are involved in the formation of long-term memory and that immediate memory and working memory are independent of these structures. This traditional idea has recently been revisited. Impaired performance…
Descriptors: Intervals, Visual Perception, Short Term Memory, Long Term Memory
Debrabant, Julie; Gheysen, Freja; Caeyenberghs, Karen; Van Waelvelde, Hilde; Vingerhoets, Guy – Research in Developmental Disabilities: A Multidisciplinary Journal, 2013
A dysfunction in predictive motor timing is put forward to underlie DCD-related motor problems. Predictive timing allows for the pre-selection of motor programmes (except "program" in computers) in order to decrease processing load and facilitate reactions. Using functional magnetic resonance imaging (fMRI), this study investigated the neural…
Descriptors: Brain, Visual Stimuli, Reaction Time, Intervals
Gonzalez Perilli, Fernando; Barrada, Juan Ramon; Maiche, Alejandro – Psicologica: International Journal of Methodology and Experimental Psychology, 2013
The presentation of a hand grasp facilitates the recognition of subsequent objects when the grasp is coherent with the object to be identified. This outcome is usually explained as the integration of two different processes: descriptive visual processes in ventral visual areas and processes in charge of the computations of action metrics in dorsal…
Descriptors: Classification, Cognitive Processes, Brain Hemisphere Functions, Reaction Time
Murphy, Brian; Poesio, Massimo; Bovolo, Francesca; Bruzzone, Lorenzo; Dalponte, Michele; Lakany, Heba – Brain and Language, 2011
Achieving a clearer picture of categorial distinctions in the brain is essential for our understanding of the conceptual lexicon, but much more fine-grained investigations are required in order for this evidence to contribute to lexical research. Here we present a collection of advanced data-mining techniques that allows the category of individual…
Descriptors: Intervals, Semantics, Cognitive Processes, Brain Hemisphere Functions
Spotorno, Sara; Faure, Sylvane – Brain and Cognition, 2011
What accounts for the Right Hemisphere (RH) functional superiority in visual change detection? An original task which combines one-shot and divided visual field paradigms allowed us to direct change information initially to the RH or the Left Hemisphere (LH) by deleting, respectively, an object included in the left or right half of a scene…
Descriptors: Intervals, Semantics, Visual Perception, Brain Hemisphere Functions
Lindin, Monica; Diaz, Fernando; Capilla, Almudena; Ortiz, Tomas; Maestu, Fernando – Neuropsychologia, 2010
The tip-of-the-tongue state (TOT) in face naming is a transient state of difficulty in access to a person's name along with the conviction that the name is known. The aim of the present study was to characterize the spatio-temporal course of brain activation in the successful naming and TOT states, by means of magnetoencephalography, during a…
Descriptors: Brain Hemisphere Functions, Intervals, Profiles, Diagnostic Tests
Sosa, Yamaya; Teder-Salejarvi, Wolfgang A.; McCourt, Mark E. – Brain and Cognition, 2010
Neurologically normal observers misperceive the midpoint of horizontal lines as systematically "leftward" of veridical center, a phenomenon known as pseudoneglect. Pseudoneglect is attributed to a tonic asymmetry of visuospatial attention favoring left hemispace. Whereas visuospatial attention is biased toward left hemispace, some evidence…
Descriptors: Auditory Stimuli, Intervals, Spatial Ability, Attention
Correa, Angel; Trivino, Monica; Perez-Duenas, Carolina; Acosta, Alberto; Lupianez, Juan – Brain and Cognition, 2010
Temporal preparation and impulsivity involve overlapping neural structures (prefrontal cortex) and cognitive functions (response inhibition and time perception), however, their interrelations had not been investigated. We studied such interrelations by comparing the performance of groups with low vs. high non-clinical trait impulsivity during a…
Descriptors: Conceptual Tempo, Cues, Intervals, Inhibition
Sidiropoulos, Kyriakos; Ackermann, Hermann; Wannke, Michael; Hertrich, Ingo – Brain and Cognition, 2010
This study investigates the temporal resolution capacities of the central-auditory system in a subject (NP) suffering from repetition conduction aphasia. More specifically, the patient was asked to detect brief gaps between two stretches of broadband noise (gap detection task) and to evaluate the duration of two biphasic (WN-3) continuous noise…
Descriptors: Intervals, Aphasia, Acoustics, Time Perspective
Steinhauser, Marco; Hubner, Ronald; Druey, Michel – Neuropsychologia, 2009
When rapidly switching between two tasks, bivalent stimuli can accidentally trigger the previously executed and therefore still activated response. Recently, it has been suggested that behavioral response-repetition effects reflect response inhibition that reduces the risk of such erroneous response repetitions. The present study investigated…
Descriptors: Inhibition, Responses, Brain Hemisphere Functions, Correlation
Perianez, Jose A.; Barcelo, Francisco – Neuropsychologia, 2009
Task-cueing studies suggest that the updating of sensory and task representations both contribute to behavioral task-switch costs [Forstmann, B. U., Brass, M., & Koch, I. (2007). "Methodological and empirical issues when dissociating cue-related from task-related processes in the explicit task-cuing procedure." "Psychological Research, 71"(4),…
Descriptors: Cues, Intervals, Psychological Studies, Cognitive Processes
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
Cappelletti, Marinella; Freeman, Elliot D.; Cipolotti, Lisa – Neuropsychologia, 2009
This study investigated time, numerosity and space processing in a patient (CB) with a right hemisphere lesion. We tested whether these magnitude dimensions share a common magnitude system or whether they are processed by dimension-specific magnitude systems. Five experimental tasks were used: Tasks 1-3 assessed time and numerosity independently…
Descriptors: Intervals, Numbers, Number Concepts, Time
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
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