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Experimental Neurology|July 6, 2010
Lack of neuroprotective effects of simvastatin and minocycline in a model of cervical spinal cord injuryJae H T Lee, Seth Tigchelaar, Jie Liu, et al.
Magnetic Resonance in Medicine|February 18, 2025
Interpretation of inhomogeneous magnetization transfer in myelin water using a four-pool model with dipolar reservoirsMichelle H Lam, Masha Novoselova, Andrew Yung, et al.
Journal of Neurotrauma|January 31, 2013
Characterization of a cervical spinal cord hemicontusion injury in mice using the infinite horizon impactorFemke Streijger, Tim M J Beernink, Jae H T Lee, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|April 22, 2026
Wireless, Adaptable and Fully Implantable Battery-powered Devices for Optical Stimulation of the Spinal Cord in Small RodentsShahriar Shalileh, Adan Moallemi, Elham Mohseni Vadeghani, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 7, 2007
Skin-derived precursors generate myelinating Schwann cells that promote remyelination and functional recovery after contusion spinal cord injuryJeff Biernaskie, Joseph S Sparling, Jie Liu, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 24, 2014
Ministrokes in channelrhodopsin-2 transgenic mice reveal widespread deficits in motor output despite maintenance of cortical neuronal excitabilityEitan Anenberg, Pamela Arstikaitis, Yoichi Niitsu, et al.
Progress in Neurobiology|March 4, 2014
Remyelination after spinal cord injury: is it a target for repair?Jason R Plemel, Michael B Keough, Greg J Duncan, et al.
Nature Communications|August 5, 2018
Locomotor recovery following contusive spinal cord injury does not require oligodendrocyte remyelinationGreg J Duncan, Sohrab B Manesh, Brett J Hilton, et al.
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