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Purkinje Cells in Posterior Cerebellar Vermis Encode Motion in an Inertial Reference Frame
Tatyana A. Yakusheva
, Aasef G. Shaikh
, Andrea M. Green
, Pablo M. Blazquez
, J. David Dickman
, Dora E E. Angelaki
Department of Otolaryngology
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
DBBS - Neurosciences
Research output
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Contribution to journal
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Article
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peer-review
167
Scopus citations
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Keyphrases
Semicircular Canal
100%
Purkinje Cell
100%
Vestibular Afferent
100%
Cerebellar Vermis
100%
Self-motion
100%
Inertial Reference Frame
100%
Vertebrates
50%
Spatial Orientation
50%
Inner Ear
50%
Vestibular
50%
Motion Orientation
50%
Cortical Neurons
50%
Computational Challenges
50%
Deep Cerebellar nuclei
50%
Linear Acceleration
50%
Neuron Activity
50%
Otolith Organs
50%
Homogeneous Population
50%
Inertial Motion
50%
Motion Sensor
50%
Terrestrial Environment
50%
Egocentric Reference Frame
50%
Horizontal Component
50%
Rotation Signals
50%
Neuroscience
Purkinje Cell
100%
Semicircular Canal
100%
Cerebellar Vermis
100%
Otolith
50%
Deep Cerebellar Nuclei
50%