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The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|August 5, 2016
A Neural Model of MST and MT Explains Perceived Object Motion during Self-MotionOliver W Layton, Brett R Fajen
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|November 9, 2019
Computational Mechanisms for Perceptual Stability using Disparity and Motion ParallaxOliver W Layton, Brett R Fajen
Journal of Neurophysiology|October 30, 2015
The temporal dynamics of heading perception in the presence of moving objectsOliver W Layton, Brett R Fajen
Scientific Reports|August 4, 2022
Distributed encoding of curvilinear self-motion across spiral optic flow patternsOliver W Layton, Brett R Fajen
Plos Computational Biology|June 25, 2016
Competitive Dynamics in MSTd: A Mechanism for Robust Heading Perception Based on Optic FlowOliver W Layton, Brett R Fajen
Frontiers in Psychology|January 30, 2023
The accuracy of object motion perception during locomotionOliver W Layton, Melissa S Parade, Brett R Fajen
Bioinspiration & Biomimetics|May 17, 2022
Estimating curvilinear self-motion from optic flow with a biologically inspired neural systemOliver W Layton, Nathaniel Powell, Scott T Steinmetz, et al.
Journal of Vision|April 2, 2020
Affordance-based versus current-future accounts of choosing whether to pursue or abandon the chase of a moving targetScott T Steinmetz, Oliver W Layton, Nathaniel V Powell, et al.
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