Jeff Keating

Affiliations: 
University of Pennsylvania, Philadelphia, PA, United States 
Area:
Neurophysiology, motor learning, motor coordination
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"Jeff Keating"
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Publications

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Hakimian S, Norris SA, Greger B, et al. (2008) Time and frequency characteristics of Purkinje cell complex spikes in the awake monkey performing a nonperiodic task. Journal of Neurophysiology. 100: 1032-40
Heck DH, Thach WT, Keating JG. (2007) On-beam synchrony in the cerebellum as the mechanism for the timing and coordination of movement. Proceedings of the National Academy of Sciences of the United States of America. 104: 7658-63
Miall RC, Keating JG, Malkmus M, et al. (1998) Simple spike activity predicts occurrence of complex spikes in cerebellar Purkinje cells. Nature Neuroscience. 1: 13-5
Keating JG, Thach WT. (1997) No clock signal in the discharge of neurons in the deep cerebellar nuclei. Journal of Neurophysiology. 77: 2232-4
Bastian AJ, Martin TA, Keating JG, et al. (1996) Cerebellar ataxia: abnormal control of interaction torques across multiple joints. Journal of Neurophysiology. 76: 492-509
Martin TA, Keating JG, Goodkin HP, et al. (1996) Throwing while looking through prisms. II. Specificity and storage of multiple gaze-throw calibrations. Brain : a Journal of Neurology. 119: 1199-211
Martin TA, Keating JG, Goodkin HP, et al. (1996) Throwing while looking through prisms. I. Focal olivocerebellar lesions impair adaptation. Brain : a Journal of Neurology. 119: 1183-98
Keating JG, Thach WT. (1995) Nonclock behavior of inferior olive neurons: interspike interval of Purkinje cell complex spike discharge in the awake behaving monkey is random. Journal of Neurophysiology. 73: 1329-40
Goodkin HP, Keating JG, Martin TA, et al. (1993) Preserved simple and impaired compound movement after infarction in the territory of the superior cerebellar artery. The Canadian Journal of Neurological Sciences. Le Journal Canadien Des Sciences Neurologiques. 20: S93-104
Thach WT, Goodkin HP, Keating JG. (1992) The cerebellum and the adaptive coordination of movement. Annual Review of Neuroscience. 15: 403-42
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