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Aslin, Richard N. – Infancy, 2012
Eye-trackers suitable for use with infants are now marketed by several commercial vendors. As eye-trackers become more prevalent in infancy research, there is the potential for users to be unaware of dangers lurking "under the hood" if they assume the eye-tracker introduces no errors in measuring infants' gaze. Moreover, the influx of voluminous…
Descriptors: Infants, Human Body, Cognitive Processes, Inferences
Zieber, Nicole; Bhatt, Ramesh S.; Hayden, Angela; Kangas, Ashley; Collins, Rebecca; Bada, Henrietta – Infancy, 2010
Like faces, bodies are significant sources of social information. However, research suggests that infants do not develop body representation (i.e., knowledge about typical human bodies) until the second year of life, although they are sensitive to facial information much earlier. Yet, previous research only examined whether infants are sensitive…
Descriptors: Self Concept, Infants, Human Body, Infant Behavior
Leo, Irene; Simion, Francesca – Infancy, 2009
The aim of this study is to investigate whether newborns detect a face on the basis of a Gestalt representation based on first-order relational information (i.e., the basic arrangement of face features) by using Mooney stimuli. The incomplete 2-tone Mooney stimuli were used because they preclude focusing both on the local features (i.e., the fine…
Descriptors: Neonates, Visual Perception, Visual Stimuli, Human Body
Ferguson, Kim T.; Kulkofsky, Sarah; Cashon, Cara H.; Casasola, Marianella – Infancy, 2009
In this study, we examined developmental changes in infants' processing of own- versus other-race faces. Caucasian American 8-month-olds (Experiment 1) and 4-month-olds (Experiment 2) were tested in a habituation-switch procedure designed to assess holistic (attending to the relationship between internal and external features of the face) versus…
Descriptors: Infants, Visual Perception, Whites, Cognitive Processes
Hayden, Angela; Bhatt, Ramesh S.; Joseph, Jane E.; Tanaka, James W. – Infancy, 2007
Human adults are more accurate at discriminating faces from their own race than faces from another race. This "other-race effect" (ORE) has been characterized as a reflection of face processing specialization arising from differential experience with own-race faces. We examined whether 3.5-month-old infants exhibit ORE using morphed faces on which…
Descriptors: Infants, Whites, Discrimination Learning, Asians
Scott, Lisa S.; Shannon, Robert W.; Nelson, Charles A. – Infancy, 2006
Behavioral and electrophysiological evidence suggests a gradual, experience-dependent specialization of cortical face processing systems that takes place largely in the 1st year of life. To further investigate these findings, event-related potentials (ERPs) were collected from typically developing 9-month-old infants presented with pictures of…
Descriptors: Infants, Primatology, Visual Perception, Correlation
Aslin, Richard N.; McMurray, Bob – Infancy, 2004
Since the mid-1800s, experimental psychologists have been using eye movements and gaze direction to make inferences about perception and cognition in adults (Muller, 1826, cited in Boring, 1942). In the past 175 years, these oculomotor measures have been refined (see Kowler, 1990) and used to address similar questions in infants (see Aslin, 1985,…
Descriptors: Visual Stimuli, Eye Movements, Infants, Human Body
Johnson, Scott P.; Slemmer, Jonathan A.; Amso, Dima – Infancy, 2004
A fundamental question of perceptual development concerns how infants come to perceive partly hidden objects as unified across a spatial gap imposed by an occluder. Much is known about the time course of development of perceptual completion during the first several months after birth, as well as some of the visual information that supports unity…
Descriptors: Object Permanence, Eye Movements, Infants, Human Body
Bob McMurray; Richard N. Aslin – Infancy, 2004
We introduce a new paradigm for the assessment of auditory and visual categories in 6-month-old infants using a 2-alternative anticipatory eye-movement response. Infants were trained by 2 different methods to anticipate the location of a visual reinforcer at 1 of 2 spatial locations (right or left) based on the identity of 2 cuing stimuli. After a…
Descriptors: Visual Stimuli, Eye Movements, Infants, Human Body