Appointments
 
Adjunct Assistant Professor of Neuroscience in Neurological Surgery

Assistant Professor of Neuroscience in Neurological Surgery

 
Weill Cornell \r\nPhysician
   

Suh, Minah
Neurological Surgery
 (212) 746-2715  (212) 746-7961

Articles
1. Lee SY, Suh M, Bae SM, Choi SS, and Yang IS. Effects of Magnetic history on the ac magnetic susceptibility of granular YBCO superconductors in weak fields. Physical Review B, Volume 51., 22;16302-16309, 1995
2. Suh M, Leung HC, and Kettner RE. Kinematic model relating complex 2D smooth pursuit eye movements and Purkinje cell firing rate in cerebellar flocculus and paraflocculus of the rhesus monkeys. IEEE/EMBS 19th Annual International Conference Proceeding, 19:109-113, 1997
3. Suh M, Leung HC, and Kettner RE. Cerebellar flocculus and ventral paraflocculus Purkinje cell activity during predictive and visually driven pursuit in monkey. J. Neurophysiol. 84: 1835-1850, 2000
4. Leung HC, Suh M, and Kettner RE. Cerebellar flocculus and paraflocculus Purkinje cell activity during circular pursuit in monkey. J. Neurophysiol. 83: 13-30, 2000
5. Kettner RE, Suh M, Davis D and Leung HC. Modeling cerebellar flocculus and paralfocculus involvement in complex predictive smooth eye pursuit in monkey. Ann Ny Acad Sci 978:455-67, 2002.
6. Simpson, J.I., Belton, T., Suh, M., and Winkelman, B. Complex spike activity in the flocculus signals more than the eye can see. Ann Ny Acad Sci 978:232-6, 2002.
7. Belton T, Suh M, Simpson JI. The nonvisual complex spike signal in the flocculus responds to challenges to the vestibulo-ocular reflex gain. Ann N Y Acad Sci. 978:503-4, 2002
8. Suh M, Belton T, Simpson JI. The nonvisual complex spike signal in the flocculus responds to challenges to the vestibulo-ocular reflex gain. Ann N Y Acad Sci. 978:503-4, 2002
9. Kettner RE, Suh M, Davis D, Leung HC. Complex predictive eye pursuit in monkey: a model system for cerebellar studies of skilled movement. Arch Ital Biol. 140(4):331-40, 2002.
10. Suh M, Bahar S, Mehta AD, Schwartz TH. Temporal dependence in uncoupling of blood volume and oxygenation during interictal epileptiform events in rat neocortex. J Neurosci. 5;25(1):68-77, 2005.
11. Shariff, S., Suh M., Zhao, M., Ma, H., and Schwartz, T.H. Recent developments in oximetry and perfusion-based mapping techniques and their role in the surgical treatment of neocortical epilepsy. Epilepsy Behav, Mar;8(2):363-75, 2006.
12. Bahar S., Suh M, Zhao M, and Schwartz TH. Intrinsic Optical Signal Imaging of Neocortical Seizures: ?Epileptic Dip?. NeuroReport, Apr 3;17(5):499-503, 2006.
13. Suh M, Bahar S, Ashesh AD, and Schwartz TH. Blood volume and hemoglobin oxygenation response following electrical stimulation of human cortex. NeuroImage, May 15;31(1):66-75, 2006.
14. Suh M, Ma H, Zhao M, Sharif S, and Schwartz TH. Neurovascular coupling and Oximetry during Epileptiform Events. Mol. Neurobiol (Review). 33(3): 181-198, 2006.
15. Suh M, Kolster R, Sarkar R, McCandliss B, and Ghajar J, Deficits in Predictive Smooth Pursuit after Mild Traumatic Brain Injury. Neuroscience Letters, Jun 19;401(1-2):108-13, 2006.
16. Suh M, Kolster R, Sambrita B, Sarkar R, McCandliss B, Ghajar J. and CNRC-TBI. Increased oculomotor deficits during target blanking as an indicator of mild traumatic brain injury. Neurosci Lett. 2006 Dec 27;410(3):203-7.
17. Fan J, Kolster R, Ghajar J, Suh M, Knight R, Sarkar R, McCandliss BD and CNRC-TBI. Response anticipation and response conflict: An ERP and fMRI study. J Neurosci. 2007 Feb 28; 27(9):2272-2282
18. Voss H, McCandliss BD, Ghajar J, Suh M and CNRC-TBI, A quantitative synchronization model for smooth pursuit target tracking. Biol Cybern. 2007 Mar; 96(3):309-22.
19. Zhao M*, Suh M*, Ma M*, Perry C, Geneslaw A and Schwartz TH. Decreases in focal perfusion and hemoglobin oxygenation precede seizure onset in spontaneous human lesional epilepsy, Epilepsia, 2007 Jul 30; [Epub ahead of print] *: These authors shared the first authorship.
20. Glickstien SB, Moore H, Slowinska B, Racchumi J, Suh M and Ross M. Selective forebrain interneuron and GABA deficits in cyclin D2 null mice. Development (in press).



Book Chapters
1. Bahar S, Suh M, Mehta AD, and Schwartz TH. In vivo intrinsic optical signal imaging of neocortical epilepsy. In Bioimaging in Neurodegeneration, P. A. Broderick, D. N. Rahni, and E. H. Kolodny, eds. (Totowa, N. J., Humana Press), 149-175, 2005.
2. Suh M, Shariff S, Bahar S, Mehta AH, and Schwartz TH. Intrinsic Signal Optical Imaging of Normal and Abnormal Physiology in Animals and Humans--Seeing the invisible. Clinical Neurosurgery 52, 135-14, 2005
3. Kettner RE, Lysetskiy M, and Suh M. Primate Models for Understanding Brain Mechanisms of Cognitive Behavior. Sourcebook of Models in Biomedical Research. 2007; (Totowa, N. J., Humana Press, in press)
4. Ma H, Suh M, Zhao M, Geneslaw A, and Schwartz TH. Optical Spectroscopic Imaging of the Human Brain - Clinical Applications., 2007 (in press)
5. Suh M, Ma H, Zhao M, Geneslaw A, and Schwartz TH. Imaging the Brain with Optical Methods, Intraoperative optical imaging, 2007 (Springer, in press)


Ad Hoc Reviewers
Neuroimage,
Journal of Computational Neuroscience, Journal of Neurophysiology, Neurological Disease
   
   
 
 
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