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Sandra Gattas; Heather A. Collett; Andrew E. Huff; Samantha D. Creighton; Siobhon E. Weber; Shoshana S. Buckhalter; Silas A. Manning; Hardeep S. Ryait; Bruce L. McNaughton; Boyer D. Winters – npj Science of Learning, 2022
Enrichment in rodents affects brain structure, improves behavioral performance, and is neuroprotective. Similarly, in humans, according to the cognitive reserve concept, enriched experience is functionally protective against neuropathology. Despite this parallel, the ability to translate rodent studies to human clinical situations is limited. This…
Descriptors: Animals, Cognitive Processes, Brain, Enrichment
Chang, Edward F.; Edwards, Erik; Nagarajan, Srikantan S.; Fogelson, Noa; Dalal, Sarang S.; Canolty, Ryan T.; Kirsch, Heidi E.; Barbaro, Nicholas M.; Knight, Robert T. – Journal of Cognitive Neuroscience, 2011
Selective processing of task-relevant stimuli is critical for goal-directed behavior. We used electrocorticography to assess the spatio-temporal dynamics of cortical activation during a simple phonological target detection task, in which subjects press a button when a prespecified target syllable sound is heard. Simultaneous surface potential…
Descriptors: Sensory Integration, Task Analysis, Evaluation Methods, Brain
Longo, Matthew R.; Azanon, Elena; Haggard, Patrick – Neuropsychologia, 2010
The neural circuits underlying initial sensory processing of somatic information are relatively well understood. In contrast, the processes that go beyond primary somatosensation to create more abstract representations related to the body are less clear. In this review, we focus on two classes of higher-order processing beyond Somatosensation.…
Descriptors: Sensory Integration, Semantics, Semiotics, Science Education
Reynolds, Christopher; Reynolds, Kathleen Sheena – Online Submission, 2010
Background: Sensory integration theory proposes that because there is plasticity within the central nervous system (the brain is moldable) and because the brain consists of systems that are hierarchically organised, it is possible to stimulate and improve neuro-physiological processing and integration and thereby increase learning capacity.…
Descriptors: Learning Problems, Sensory Integration, Physiology, Program Effectiveness
Hocking, Julia; Price, Cathy J. – Brain and Language, 2009
This fMRI study investigates how audiovisual integration differs for verbal stimuli that can be matched at a phonological level and nonverbal stimuli that can be matched at a semantic level. Subjects were presented simultaneously with one visual and one auditory stimulus and were instructed to decide whether these stimuli referred to the same…
Descriptors: Verbal Stimuli, Semantics, Cognitive Processes, Diagnostic Tests
Ashton, Rebecca – Journal of Child Psychology and Psychiatry, 2010
Background: Traumatic brain injury (TBI) in infancy is relatively common, and is likely to lead to poorer outcomes than injuries sustained later in childhood. While the headlines have been grabbed by infant TBI caused by abuse, often known as shaken baby syndrome, the evidence base for how to support children following TBI in infancy is thin.…
Descriptors: Neurological Impairments, Injuries, Infants, Genetics
Simmons, Karen; Miller, Lucy Jane – Exceptional Parent, 2008
Sensory processing refers to the way the brain takes incoming sensory messages, converts them into meaningful messages, then makes a response. If the responses are disorganized or inappropriate given the sensory input, sensory processing disorder (SPD) may co-exist with autism. If a child has an occasional atypical response to sensation, he or she…
Descriptors: Sensory Integration, Autism, Occupational Therapy, Cognitive Processes
Gomez, Carlos M.; Vaquero, Encarna; Vazquez-Marrufo, Manuel – Psicologica: International Journal of Methodology and Experimental Psychology, 2004
The purpose of this review is to present information from different experiments that supports the proposal that brain systems are able to predict, in a short-term interval, certain characteristics about the next incoming stimuli. This ability allows the subject to be ready for the stimuli and be more efficient in completing the required task.…
Descriptors: Stimuli, Models, Neurology, Neurological Organization