Jerrold Vitek

Affiliations: 
Cleveland Clinic Foundation, Cleveland, OH, United States 
 University of Minnesota, Twin Cities, Minneapolis, MN 
Area:
Basal ganglia electrophysiology
Website:
http://www.neurology.umn.edu/profile_vitek.html
Google:
"Jerrold Vitek"
Mean distance: 14.63 (cluster 17)
 
SNBCP
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Publications

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Kim J, Duchin Y, Shamir RR, et al. (2018) Automatic localization of the subthalamic nucleus on patient-specific clinical MRI by incorporating 7 T MRI and machine learning: Application in deep brain stimulation. Human Brain Mapping
Eryaman Y, Kobayashi N, Moen S, et al. (2018) A simple geometric analysis method for measuring and mitigating RF induced currents on Deep Brain Stimulations leads by multichannel transmission/reception. Neuroimage
Peña E, Zhang S, Patriat R, et al. (2018) Multi-objective particle swarm optimization for postoperative deep brain stimulation targeting of subthalamic nucleus pathways. Journal of Neural Engineering
Duchin Y, Shamir RR, Patriat R, et al. (2018) Patient-specific anatomical model for deep brain stimulation based on 7 Tesla MRI. Plos One. 13: e0201469
Kubu CS, Frazier T, Cooper SE, et al. (2018) Patients' shifting goals for deep brain stimulation and informed consent. Neurology
Hendrix CM, Campbell BA, Tittle BJ, et al. (2018) Predictive encoding of motor behavior in the supplementary motor area is disrupted in Parkinsonism. Journal of Neurophysiology
Shamir RR, Duchin Y, Kim J, et al. (2018) Microelectrode Recordings Validate the Clinical Visualization of Subthalamic-Nucleus Based on 7T Magnetic Resonance Imaging and Machine Learning for Deep Brain Stimulation Surgery. Neurosurgery
Patriat R, Cooper SE, Duchin Y, et al. (2018) Individualized tractography-based parcellation of the globus pallidus pars interna using 7T MRI in movement disorder patients prior to DBS surgery. Neuroimage
Zhang S, Connolly AT, Madden L, et al. (2018) High-resolution local field potentials measured with deep brain stimulation arrays. Journal of Neural Engineering
Xiao Y, Agnesi F, Bello EM, et al. (2018) Deep brain stimulation induces sparse distributions of locally modulated neuronal activity. Scientific Reports. 8: 2062
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