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growth inhibitor Nogo-A. The Journal of Neuroscience: The Official Journal of the Society for
Neuroscience , 21 , 3665-3673.
Nishio, Y., Koda, M., Kitajo, K., et al. (2006). Delayed treatment with Rho-kinase inhibitor
does not enhance axonal regeneration or functional recovery after spinal cord injury in
rats. Experimental Neurology , 200 , 392-397.
Pinzon, A., Marcillo, A., Pabon, D., et al. (2008). A re-assessment of erythropoietin as a neu-
roprotective agent following rat spinal cord compression or contusion injury. Experimen-
tal Neurology , 213 , 129-136.
Rapalino, O., Lazarov-Spiegler, O., Agranov, E., et al. (1998). Implantation of stimulated
homologous macrophages results in partial recovery of paraplegic rats. Nature Medicine ,
4 , 814-821.
Richardson, P. M., McGuinness, U. M., & Aguayo, A. J. (1980). Axons from CNS neurons
regenerate into PNS grafts. Nature , 284 , 264-265.
Rupp, R., & Gerner, H. J. (2007). Neuroprosthetics of the upper extremity—Clinical
application in spinal cord injury and challenges for the future. Acta Neurochirurgica.
Supplement , 97 , 419-426.
Schnell, L., & Schwab, M. E. (1990). Axonal regeneration in the rat spinal cord produced by an
antibody against myelin-associated neurite growth inhibitors. Nature , 343 , 269-272.
Schuld, C., Wiese, J., Hug, A., et al. (2012). Computer implementation of the international
standards for neurological classification of spinal cord injury for consistent and efficient
derivation of its subscores including handling of data from not testable segments. Journal of
Neurotrauma , 29 , 453-461.
Schwab, M. E., & Caroni, P. (1988). Oligodendrocytes and CNS myelin are nonpermissive
substrates for neurite growth and fibroblast spreading in vitro . The Journal of Neuroscience:
The Official Journal of the Society for Neuroscience , 8 , 2381-2393.
Sharp, J., Frame, J., Siegenthaler, M., et al. (2010). Human embryonic stem cell-derived
oligodendrocyte progenitor cell transplants improve recovery after cervical spinal cord
injury. Stem Cells , 28 , 152-163.
Sherwood, A. M., Dimitrijevic, M. R., & McKay, W. B. (1992). Evidence of subclinical
brain influence in clinically complete spinal cord injury: Discomplete SCI. Journal of
the Neurological Sciences , 110 , 90-98.
Simonen, M., Pedersen, V., Weinmann, O., et al. (2003). Systemic deletion of the myelin-
associated outgrowth inhibitor Nogo-A improves regenerative and plastic responses after
spinal cord injury. Neuron , 38 , 201-211.
Spiess,M.R.,Muller,R.M.,Rupp,R.,etal.(2009).ConversioninASIAimpairmentscale
during the first year after traumatic spinal cord injury. Journal of Neurotrauma , 26 , 2027-2036.
Steward, O., Sharp, K., Selvan, G., et al. (2006). A re-assessment of the consequences of
delayed transplantation of olfactory lamina propria following complete spinal cord tran-
section in rats. Experimental Neurology , 198 , 483-499.
Steward, O., Sharp, K., Yee, K. M., et al. (2008). A re-assessment of the effects of a Nogo-66
receptor antagonist on regenerative growth of axons and locomotor recovery after spinal
cord injury in mice. Experimental Neurology , 209 , 446-468.
Sung, J. K., Miao, L., Calvert, J. W., et al. (2003). A possible role of RhoA/Rho-kinase in
experimental spinal cord injury in rat. Brain Research , 959 , 29-38.
Tanaka, H., Yamashita, T., Yachi, K., et al. (2004). Cytoplasmic p21(Cip1/WAF1) enhances
axonal regeneration and functional recovery after spinal cord injury in rats. Neuroscience ,
127 , 155-164.
Thallmair, M., Metz, G. A., Z'Graggen, W. J., et al. (1998). Neurite growth inhibitors re-
strict plasticity and functional recovery following corticospinal tract lesions. Nature Neu-
roscience , 1 , 124-131.
Tonges, L., Koch, J. C., Bahr, M., et al. (2011). ROCKing regeneration: Rho kinase inhi-
bition as molecular target for neurorestoration. Frontiers in Molecular Neuroscience , 4 , 39.
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