Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Method to Extend Research in Time (MERIT) Award (R37)
Project #
5R37EY001849-21
Application #
2019404
Study Section
Special Emphasis Panel (NSS)
Project Start
1976-09-30
Project End
1997-09-29
Budget Start
1996-09-30
Budget End
1997-09-29
Support Year
21
Fiscal Year
1996
Total Cost
Indirect Cost
Name
Johns Hopkins University
Department
Neurology
Type
Schools of Medicine
DUNS #
045911138
City
Baltimore
State
MD
Country
United States
Zip Code
21218
Shaikh, Aasef G; Zee, David S; Jinnah, H A (2015) Oscillatory head movements in cervical dystonia: Dystonia, tremor, or both? Mov Disord 30:834-42
Shaikh, Aasef G; Wong, Aaron L; Zee, David S et al. (2013) Keeping your head on target. J Neurosci 33:11281-95
Shaikh, Aasef G; Palla, Antonella; Marti, Sarah et al. (2013) Role of cerebellum in motion perception and vestibulo-ocular reflex-similarities and disparities. Cerebellum 12:97-107
Schubert, Michael C; Migliaccio, Americo A; Ng, Tammy W C et al. (2012) The under-compensatory roll aVOR does not affect dynamic visual acuity. J Assoc Res Otolaryngol 13:517-25
Shaikh, Aasef G; Zee, David S; Optican, Lance M et al. (2011) The effects of ion channel blockers validate the conductance-based model of saccadic oscillations. Ann N Y Acad Sci 1233:58-63
Xu-Wilson, Minnan; Tian, Jing; Shadmehr, Reza et al. (2011) TMS perturbs saccade trajectories and unmasks an internal feedback controller for saccades. J Neurosci 31:11537-46
Demer, Joseph L; Poukens, Vadims; Ying, Howard et al. (2010) Effects of intracranial trochlear neurectomy on the structure of the primate superior oblique muscle. Invest Ophthalmol Vis Sci 51:3485-93
Shaikh, Aasef G; Wong, Aaron L; Optican, Lance M et al. (2010) Sustained eye closure slows saccades. Vision Res 50:1665-75
Schubert, Michael C; Zee, David S (2010) Saccade and vestibular ocular motor adaptation. Restor Neurol Neurosci 28:9-18
Shaikh, Aasef G; Hong, Simon; Liao, Ke et al. (2010) Oculopalatal tremor explained by a model of inferior olivary hypertrophy and cerebellar plasticity. Brain 133:923-40

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