Wilsaan M. Joiner, Ph.D.

University of California, Davis, Davis, CA 
oculomotor, vestibular, dynamical models
"Wilsaan Joiner"
Mean distance: 17.53 (cluster 17)


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Mark Shelhamer grad student 2007 Johns Hopkins
 (Time estimation and error feedback in predictive eye movement timing.)
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Kelly S, Zhou W, Bansal S, et al. (2019) The temporal and spatial constraints of saccade planning to double-step target displacements. Vision Research
Wiener M, Zhou W, Bader F, et al. (2019) Movement Improves the Quality of Temporal Perception and Decision Making. Eneuro
Nguyen KP, Zhou W, McKenna E, et al. (2019) The 24 hour savings of adaptation to novel movement dynamics initially reflects the recall of previous performance. Journal of Neurophysiology
Bansal S, Bray LCJ, Schwartz BL, et al. (2018) Transsaccadic Perception Deficits in Schizophrenia Reflect the Improper Internal Monitoring of Eye Movement Rather Than Abnormal Sensory Processing. Biological Psychiatry. Cognitive Neuroscience and Neuroimaging. 3: 168-177
McKenna E, Bray LCJ, Zhou W, et al. (2017) The absence or temporal offset of visual feedback does not influence adaptation to novel movement dynamics. Journal of Neurophysiology. jn.00636.2016
Zhou W, Fitzgerald J, Colucci-Chang K, et al. (2017) The Temporal Stability of Visuomotor Adaptation Generalization. Journal of Neurophysiology. jn.00822.2016
Hosseini EA, Nguyen KP, Joiner WM. (2017) The decay of motor adaptation to novel movement dynamics reveals an asymmetry in the stability of motion state-dependent learning. Plos Computational Biology. 13: e1005492
Cavanaugh J, Berman RA, Joiner WM, et al. (2016) Saccadic Corollary Discharge Underlies Stable Visual Perception. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 31-42
Bansal S, Jayet Bray LC, Peterson MS, et al. (2015) The effect of saccade metrics on the corollary discharge contribution to perceived eye location. Journal of Neurophysiology. 113: 3312-22
Joiner WM, Cavanaugh J, Wurtz RH. (2013) Compression and suppression of shifting receptive field activity in frontal eye field neurons. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 18259-69
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