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The multiple dimensions of translational research |
Garnette R Sutherland* |
Department of Clinical Neurosciences, Division of Neurosurgery, University of Calgary, Calgary Alberta, T2N 4Z6, Canada |
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The multiple dimensions of translational research |
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[6] Sutherland GR, Newhook P, Feil G, et al. An image-guided MR compatible surgical robot. Neurosurgery , 2008, 62(2): 286-293.
[7] Sutherland GR, Louw D, McBeth P, et al. MRI compatible neurosurgical robot system. U.S. Patent No. 7155316 B2. December 26, 2006. Expiry date December 26, 2026.
[8] Pandya S, Motkoski JW, Serrano-Almeida C, et al. Advancing neurosurgery with image-guided Robotics. J Neurosurg, 2009, 111(12):1141-1149.
[9] Lwu S, Sutherland GR. Neurosurgical robots- a review. In: W Hall, Nimsky C, Truwit CL. Intraoperative MRI-Guided Neurosurgery. New York: Thieme Medical (Publishers) Inc. 2010, 23:222-232.
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[11] Greer AD, Newhook P, Sutherland GR. Human-machine interface for robotic surgery and stereotaxy. IEEE/ ASME Transactions on MRI Compatible Mechatronic Systems, 2008,13(3): 355-361.
[12] Hoult D, Saunders JK, Sutherland GR, et al. Surgical procedure with magnetic resonance imaging. U.S. Patent No. 5735278. April 7, 1998. Expiry date April 7, 2018.
[13] Sutherland GR, Kaibara T, Louw D, et al. A Mobile High-Field Magnetic Resonance System for Neurosurgery. J Neurosurg,1999,91(5):804-813..
[14] Kaibara T, Saunders JK, Sutherland GR. Advances in Mobile Intraoperative MR Imaging. Neurosurgery 47(1):131-138, 2000.
[15] Latour I, Sutherland GR. Intraoperative MRI. In: Mountford C, Himmelreich U. Modern, Webb G. Magnetic resonance. London: Medical Uses Springer, 2006:3.
[16] Lang MJ, Kelly JJP, Sutherland GR. A moveable 3-Tesla intra-operative MRI system. Neurosurgery, 2011,68(ONS Suppl 1):ons168-ons179. |
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