Sunah Kim, Ph.D.

Affiliations: 
University of California, Berkeley, Berkeley, CA, United States 
Area:
Vision, Touch, Multisensory Integration, Neuroimaging, Shape, Motion, Direction, Color, Space Perception
Google:
"Sunah Kim"
Mean distance: 14.55 (cluster 23)
 
SNBCP

Parents

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Chan-Sup Chung grad student 2002-2004 Yonsei University
Thomas W. James grad student 2005-2010 Indiana University
 (Neural mechanisms of multisensory visuo -haptic object recognition.)
Martin Banks post-doc 2010- UC Berkeley
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Publications

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James TW, Potter RF, Lee S, et al. (2015) How realistic should avatars be?: An initial fMRI investigation of activation of the face perception network by real and animated faces Journal of Media Psychology. 27: 109-117
Li R, He S, Skopljak B, et al. (2014) A multisensor integration approach toward astronaut navigation for landed lunar missions Journal of Field Robotics. 31: 245-262
Stevenson RA, Bushmakin M, Kim S, et al. (2012) Inverse effectiveness and multisensory interactions in visual event-related potentials with audiovisual speech. Brain Topography. 25: 308-26
Kim S, Stevenson RA, James TW. (2012) Visuo-haptic neuronal convergence demonstrated with an inversely effective pattern of BOLD activation. Journal of Cognitive Neuroscience. 24: 830-42
James TW, Stevenson RA, Kim S, et al. (2011) Shape from sound: evidence for a shape operator in the lateral occipital cortex. Neuropsychologia. 49: 1807-15
Stevenson RA, Stevenson LD, Rupp HA, et al. (2011) Incorporating emotions specific to the sexual response into theories of emotion using the Indiana Sexual and Affective Word Set. Archives of Sexual Behavior. 40: 59-78
James TW, Huh E, Kim S. (2010) Temporal and spatial integration of face, object, and scene features in occipito-temporal cortex. Brain and Cognition. 74: 112-22
Stevenson RA, Altieri NA, Kim S, et al. (2010) Neural processing of asynchronous audiovisual speech perception. Neuroimage. 49: 3308-18
Kim S, James TW. (2010) Enhanced effectiveness in visuo-haptic object-selective brain regions with increasing stimulus salience. Human Brain Mapping. 31: 678-93
Stevenson RA, VanDerKlok R, Kim S, et al. (2010) Different neural networks underlie temporal asynchrony and semantic congruency effects with audiovisual speech F1000research. 1
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