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Neuroscience|April 26, 2011
MicroRNA dysregulation following spinal cord contusion: implications for neural plasticity and repairE R Strickland, M A Hook, S Balaraman, et al.Behavioural Brain Research|April 22, 1999
Shock-induced hyperalgesia: evidence forebrain systems play an essential roleT E King, E D Crown, A N Sieve, et al.Neuroscience|October 6, 2012
Temporal regularity determines the impact of electrical stimulation on tactile reactivity and response to capsaicin in spinally transected ratsK M Baumbauer, K H Lee, D A Puga, et al.Journal of Experimental Psychology. Animal Behavior Processes|August 11, 2001
Shock-induced hyperalgesia: IV. GeneralityM W Meagher, A R Ferguson, E D Crown, et al.Journal of Comparative and Physiological Psychology|December 1, 1980
Opiate antagonists and long-term analgesic reaction induced by inescapable shock in ratsS F Maier, S Davies, J W Grau, et al.Neuroscience|October 27, 2011
Intermittent noxious stimulation following spinal cord contusion injury impairs locomotor recovery and reduces spinal brain-derived neurotrophic factor-tropomyosin-receptor kinase signaling in adult ratsS M Garraway, J D Turtle, J R Huie, et al.Neuroscience|August 28, 2007
BDNF and learning: Evidence that instrumental training promotes learning within the spinal cord by up-regulating BDNF expressionF Gómez-Pinilla, J R Huie, Z Ying, et al.Neuroscience|August 5, 2008
Timing in the absence of supraspinal input I: variable, but not fixed, spaced stimulation of the sciatic nerve undermines spinally-mediated instrumental learningK M Baumbauer, K C Hoy, J R Huie, et al.Neuroscience|November 8, 2011
Brain-derived neurotrophic factor promotes adaptive plasticity within the spinal cord and mediates the beneficial effects of controllable stimulationJ R Huie, S M Garraway, K M Baumbauer, et al.Pageof 4