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The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|July 26, 2017
Gain Modulation as a Mechanism for Coding Depth from Motion Parallax in Macaque Area MTHyungGoo R Kim, Dora E Angelaki, Gregory C DeAngelis
Brain Research|August 16, 1991
Response properties of gerbil otolith afferents to small angle pitch and roll tiltsJ D Dickman, D E Angelaki, M J Correia
Neuron|September 2, 2008
Multisensory integration in macaque visual cortex depends on cue reliabilityMichael L Morgan, Gregory C Deangelis, Dora E Angelaki
Elife|November 3, 2016
Direction-dependent arm kinematics reveal optimal integration of gravity cuesJeremie Gaveau, Bastien Berret, Dora E Angelaki, et al.
Nature|March 18, 2008
A neural representation of depth from motion parallax in macaque visual cortexJacob W Nadler, Dora E Angelaki, Gregory C DeAngelis
Proceedings of the National Academy of Sciences of the United States of America|May 6, 2015
Self-motion perception in autism is compromised by visual noise but integrated optimally across multiple sensesAdam Zaidel, Robin P Goin-Kochel, Dora E Angelaki
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|May 23, 2001
Differential sensorimotor processing of vestibulo-ocular signals during rotation and translationD E Angelaki, A M Green, J D Dickman
Experimental Brain Research|July 27, 2000
Low-frequency otolith and semicircular canal interactions after canal inactivationD E Angelaki, D M Merfeld, B J Hess
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|April 1, 1993
Two-dimensional spatiotemporal coding of linear acceleration in vestibular nuclei neuronsD E Angelaki, G A Bush, A A Perachio
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|February 13, 2015
A functional link between MT neurons and depth perception based on motion parallaxHyungGoo R Kim, Dora E Angelaki, Gregory C DeAngelis
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