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Showing 1 to 15 of 31 results Save | Export
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Wang, Shuo – Journal of Autism and Developmental Disorders, 2019
Prior studies have emphasized the contribution of aberrant amygdala structure and function in social aspects of autism. However, it remains largely unknown whether amygdala dysfunction directly impairs visual attention and exploration as has been observed in people with autism spectrum disorders (ASD). Here, gaze patterns were directly compared…
Descriptors: Autism, Pervasive Developmental Disorders, Brain Hemisphere Functions, Visual Perception
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McLaughlin, Christopher S.; Grosman, Hannah E.; Guillory, Sylvia B.; Isenstein, Emily L.; Wilkinson, Emma; Trelles, Maria del Pilar; Halpern, Danielle B.; Siper, Paige M.; Kolevzon, Alexander; Buxbaum, Joseph D.; Wang, A. Ting; Foss-Feig, Jennifer H. – Autism: The International Journal of Research and Practice, 2021
A common example of social differences in autism spectrum disorder is poor modulation of reciprocal gaze, including reduced duration of eye contact and difficulty detecting the aim of another's gaze. It remains unclear, however, whether such differences are specific to the social domain, or are instead indicative of broader alterations in…
Descriptors: Attention Control, Autism, Pervasive Developmental Disorders, Eye Movements
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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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Pickron, Charisse B.; Iyer, Arjun; Fava, Eswen; Scott, Lisa S. – Child Development, 2018
This study examined differences in visual attention as a function of label learning from 6 to 9 months of age. Before and after 3 months of parent-directed storybook training with computer-generated novel objects, event-related potentials and visual fixations were recorded while infants viewed trained and untrained images (n = 23). Relative to a…
Descriptors: Child Development, Visual Perception, Attention Control, Parent Child Relationship
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Hales, Jena B.; Broadbent, Nicola J.; Velu, Priya D.; Squire, Larry R.; Clark, Robert E. – Learning & Memory, 2015
Structures in the medial temporal lobe, including the hippocampus and perirhinal cortex, are known to be essential for the formation of long-term memory. Recent animal and human studies have investigated whether perirhinal cortex might also be important for visual perception. In our study, using a simultaneous oddity discrimination task, rats with…
Descriptors: Brain Hemisphere Functions, Animals, Eye Movements, Task Analysis
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Keehn, Brandon; Joseph, Robert M. – Journal of Autism and Developmental Disorders, 2016
We used eye-tracking to investigate the roles of enhanced discrimination and peripheral selection in superior visual search in autism spectrum disorder (ASD). Children with ASD were faster at visual search than their typically developing peers. However, group differences in performance and eye-movements did not vary with the level of difficulty of…
Descriptors: Autism, Eye Movements, Visual Perception, Visual Discrimination
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Dundas, Eva M.; Best, Catherine A.; Minshew, Nancy J.; Strauss, Mark S. – Journal of Autism and Developmental Disorders, 2012
It has been established that typically developing individuals have a bias to attend to facial information in the left visual field (LVF) more than in the right visual field. This bias is thought to arise from the right hemisphere's advantage for processing facial information, with evidence suggesting it to be driven by the configural demands of…
Descriptors: Autism, Visual Discrimination, Comparative Analysis, Visual Perception
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Senju, Atsushi; Kikuchi, Yukiko; Akechi, Hironori; Hasegawa, Toshikazu; Tojo, Yoshikuni; Osanai, Hiroo; Johnson, Mark H. – Research in Autism Spectrum Disorders, 2011
Atypical development of face processing is a major characteristic in autism spectrum disorder (ASD), which could be due to atypical interactions between subcortical and cortical face processing. The current study investigated the saccade planning towards faces in ASD. Seventeen children with ASD and 17 typically developing (TD) children observed a…
Descriptors: Autism, Pervasive Developmental Disorders, Visual Perception, Cognitive Processes
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Greene, Deanna J.; Zaidel, Eran – Neuropsychologia, 2011
Research points to a right hemisphere bias for processing social stimuli. Hemispheric specialization for attention shifts cued by social stimuli, however, has been rarely studied. We examined the capacity of each hemisphere to orient attention in response to social and nonsocial cues using a lateralized spatial cueing paradigm. We compared the…
Descriptors: Brain Hemisphere Functions, Cues, Intervals, Stimuli
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Coventry, Kenny R.; Lynott, Dermot; Cangelosi, Angelo; Monrouxe, Lynn; Joyce, Dan; Richardson, Daniel C. – Brain and Language, 2010
Spatial language descriptions, such as "The bottle is over the glass", direct the attention of the hearer to particular aspects of the visual world. This paper asks how they do so, and what brain mechanisms underlie this process. In two experiments employing behavioural and eye tracking methodologies we examined the effects of spatial language on…
Descriptors: Attention, Brain Hemisphere Functions, Spatial Ability, Language Usage
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Farzin, Faraz; Rivera, Susan M.; Whitney, David – Brain, 2011
Fragile X syndrome is the most common cause of inherited intellectual impairment and the most common single-gene cause of autism. Individuals with fragile X syndrome present with a neurobehavioural phenotype that includes selective deficits in spatiotemporal visual perception associated with neural processing in frontal-parietal networks of the…
Descriptors: Attention, Infants, Visual Perception, Genetic Disorders
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Van Aken, Katrijn; Swillen, Ann; Beirinckx, Marc; Janssens, Luc; Caeyenberghs, Karen; Smits-Engelsman, Bouwien – Research in Developmental Disabilities: A Multidisciplinary Journal, 2010
The present study focused on the mechanism subserving the production of kinematic patterns in 21 children with 22q11.2DS (mean age=9.6 [plus or minus] 1.9; mean FSIQ=73.05 [plus or minus] 10.2) and 21 age- and IQ-matched control children (mean age=9.6 [plus or minus] 1.9; mean FSIQ=73.38 [plus or minus] 12.0) when performing a visuo-manual…
Descriptors: Feedback (Response), Motor Development, Psychomotor Skills, Genetic Disorders
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Jordan, Timothy R.; Paterson, Kevin B. – Neuropsychologia, 2009
In recent years, some researchers have proposed that a fundamental component of the word recognition process is that each fovea is divided precisely at its vertical midline and that information either side of this midline projects to different, contralateral hemispheres. Thus, when a word is fixated, all letters to the left of the point of…
Descriptors: Scientific Research, Word Recognition, Brain Hemisphere Functions, Theories
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Crocker, Matthew W.; Knoeferle, Pia; Mayberry, Marshall R. – Brain and Language, 2010
Empirical evidence demonstrating that sentence meaning is rapidly reconciled with the visual environment has been broadly construed as supporting the seamless interaction of visual and linguistic representations during situated comprehension. Based on recent behavioral and neuroscientific findings, however, we argue for the more deeply rooted…
Descriptors: Comprehension, Sentences, Eye Movements, Linguistics
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Loth, Eva; Gomez, Juan Carlos; Happe, Francesca – Neuropsychologia, 2010
Behavioural, neuroimaging and neurophysiological approaches emphasise the active and constructive nature of visual perception, determined not solely by the environmental input, but modulated top-down by prior knowledge. For example, degraded images, which at first appear as meaningless "blobs", can easily be recognized as, say, a face, after…
Descriptors: Autism, Pervasive Developmental Disorders, Imagery, Prior Learning
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