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Source Code for Biology and Medicine|May 23, 2013
EEGgui: a program used to detect electroencephalogram anomalies after traumatic brain injuryJustin Sick, Eric Bray, Amade Bregy, et al.Experimental Neurology|November 14, 2002
Therapeutic strategies targeting caspase inhibition following spinal cord injury in ratsHiroshi Ozawa, Robert W Keane, Alexander E Marcillo, et al.Gastroenterology|September 1, 1981
Barrett's epithelium complicating lye ingestion with sparing of the distal esophagusS J Spechler, E M Schimmel, J W Dalton, et al.Experimental Neurology|July 17, 2020
Age as a determinant of inflammatory response and survival of glia and axons after human traumatic spinal cord injuryJulio C Furlan, Yang Liu, W Dalton Dietrich, et al.Journal of Neuroscience Methods|March 17, 2007
Characterization of a thromboembolic photochemical model of repeated stroke in miceJ Diego Lozano, Denise P Abulafia, Gary H Danton, et al.Therapeutic Hypothermia and Temperature Management|February 27, 2013
The Use of Hypothermia Therapy in Traumatic Ischemic / Reperfusional Brain Injury: Review of the LiteraturesShoji Yokobori, Janek Frantzen, Ross Bullock, et al.Heliyon|July 21, 2017
Automated approach to detecting behavioral states using EEG-DABSZachary B Loris, Mathew Danzi, Justin Sick, et al.Thescientificworldjournal|July 6, 2018
The Use of Antisense-Mediated Inhibition to Delineate The Role of Inflammatory Agents in The Pathophysiology of Spinal Cord InjuryDamien D Pearse, Francisco C Pereira, Katina Chatzipanteli, et al.Experimental Neurology|December 15, 2010
Anti-CD11d monoclonal antibody treatment for rat spinal cord compression injuryAndres Hurtado, Alexander Marcillo, Beata Frydel, et al.Restorative Neurology and Neuroscience|May 3, 2007
Widespread cellular proliferation and focal neurogenesis after traumatic brain injury in the ratCarlos Urrea, Daniel A Castellanos, Jacqueline Sagen, et al.Pageof 30