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Elife|October 19, 2017
A unified internal model theory to resolve the paradox of active versus passive self-motion sensationJean Laurens, Dora E AngelakiExperimental Brain Research|February 5, 2011
The functional significance of velocity storage and its dependence on gravityJean Laurens, Dora E AngelakiJournal of Neurophysiology|June 27, 2019
A model-based reassessment of the three-dimensional tuning of head direction cells in ratsJean Laurens, Dora E AngelakiNeuron|January 19, 2018
The Brain Compass: A Perspective on How Self-Motion Updates the Head Direction Cell AttractorJean Laurens, Dora E AngelakiCurrent Opinion in Neurobiology|December 27, 2019
The head direction cell network: attractor dynamics, integration within the navigation system, and three-dimensional propertiesDora E Angelaki, Jean LaurensProceedings of the National Academy of Sciences of the United States of America|January 29, 2020
Simple spike dynamics of Purkinje cells in the macaque vestibulo-cerebellum during passive whole-body self-motionJean Laurens, Dora E AngelakiEneuro|June 21, 2020
Time Course of Sensory Substitution for Gravity Sensing in Visual Vertical Orientation Perception following Complete Vestibular LossDora E Angelaki, Jean LaurensNature Neuroscience|October 1, 2013
Computation of linear acceleration through an internal model in the macaque cerebellumJean Laurens, Hui Meng, Dora E AngelakiNeuron|December 24, 2013
Neural representation of orientation relative to gravity in the macaque cerebellumJean Laurens, Hui Meng, Dora E AngelakiNature Neuroscience|November 8, 2016
Gravity orientation tuning in macaque anterior thalamusJean Laurens, Byounghoon Kim, J David Dickman, et al.Pageof 21