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Immune activation is required for NT-3-induced axonal plasticity in chronic spinal cord injury.
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Neurotrophin-3 expressed in situ induces axonal plasticity in the adult injured spinal cord.
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Vector-induced NT-3 expression in rats promotes collateral growth of injured corticospinal tract axons far rostral to a spinal cord injury.
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Reticulospinal plasticity after cervical spinal cord injury in the rat involves withdrawal of projections below the injury.
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Inflammation: A Target for Treatment in Spinal Cord Injury.
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The neuroanatomical-functional paradox in spinal cord injury.
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Neuroimmune System as a Driving Force for Plasticity Following CNS Injury.
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The benefits of neuroinflammation for the repair of the injured central nervous system.
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Stroke Recovery in Rats after 24-Hour-Delayed Intramuscular Neurotrophin-3 Infusion.
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A Potential Competitive Endogenous RNA Pathway Involved in Chronic Spinal Cord Injury.
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1
Inflammation and its role in neuroprotection, axonal regeneration and functional recovery after spinal cord injury.
Exp Neurol. 2008 Feb;209(2):378-88. doi: 10.1016/j.expneurol.2007.06.009. Epub 2007 Jun 30.
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Sprouting, regeneration and circuit formation in the injured spinal cord: factors and activity.
Philos Trans R Soc Lond B Biol Sci. 2006 Sep 29;361(1473):1611-34. doi: 10.1098/rstb.2006.1890.
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Semi-automated quantification of axonal densities in labeled CNS tissue.
J Neurosci Methods. 2006 Sep 15;155(2):172-9. doi: 10.1016/j.jneumeth.2005.12.021. Epub 2006 Feb 8.
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Inflammatory-mediated injury and repair in the traumatically injured spinal cord.
Curr Pharm Des. 2005;11(10):1223-36. doi: 10.2174/1381612053507468.
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Role of the immune system in the maintenance of mouse facial motoneuron viability after nerve injury.
Brain Behav Immun. 2005 Jan;19(1):12-9. doi: 10.1016/j.bbi.2004.05.004.
10
Degenerative and regenerative mechanisms governing spinal cord injury.
Neurobiol Dis. 2004 Apr;15(3):415-36. doi: 10.1016/j.nbd.2003.11.015.

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