Noam Harel

Affiliations: 
University of Minnesota, Twin Cities, Minneapolis, MN 
Area:
fMRI, Neuroscience
Website:
http://www.cmrr.umn.edu/facultystaff/noam.shtml
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"Noam Harel"
Mean distance: 16.03 (cluster 51)
 
SNBCP
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Publications

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Grier MD, Yacoub E, Adriany G, et al. (2022) Ultra-high field (10.5T) diffusion-weighted MRI of the macaque brain. Neuroimage. 119200
Lagore RL, Moeller S, Zimmermann J, et al. (2021) An 8-dipole transceive and 24-loop receive array for non-human primate head imaging at 10.5 T. Nmr in Biomedicine. e4472
Yacoub E, Grier MD, Auerbach EJ, et al. (2020) Ultra-high field (10.5 T) resting state fMRI in the macaque. Neuroimage. 117349
Kim J, Patriat R, Kaplan J, et al. (2020) Deep Cerebellar Nuclei Segmentation via Semi-Supervised Deep Context-Aware Learning from 7T Diffusion MRI. Ieee Access : Practical Innovations, Open Solutions. 8: 101550-101568
Moeller S, Pisharady Kumar P, Andersson J, et al. (2020) Diffusion Imaging in the Post-HCPEra. Journal of Magnetic Resonance Imaging : Jmri
Patriat R, Niederer J, Kaplan J, et al. (2020) Morphological changes in the subthalamic nucleus of people with mild-to-moderate Parkinson's disease: a 7T MRI study. Scientific Reports. 10: 8785
Aman JE, Johnson LA, Sanabria DE, et al. (2020) Directional deep brain stimulation leads reveal spatially distinct oscillatory activity in the globus pallidus internus of Parkinson's disease patients. Neurobiology of Disease. 104819
Ramirez-Zamora A, Giordano J, Boyden ES, et al. (2019) Proceedings of the Sixth Deep Brain Stimulation Think Tank Modulation of Brain Networks and Application of Advanced Neuroimaging, Neurophysiology, and Optogenetics. Frontiers in Neuroscience. 13: 936
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
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