articleTop 1% cited
Neural stem cells constitutively secrete neurotrophic factors and promote extensive host axonal growth after spinal cord injury
Experimental Neurology · 2003 · Vol. 181(2) · pp. 115–129
Paul LuLeonard L. Jones(University of California, San Diego)Eban Y. Snyder(Harvard University)Mark H. Tuszynski✉(University of California, San Diego)
Nerve injury and regenerationNeurogenesis and neuroplasticity mechanismsSpinal Cord Injury ResearchNeurotrophic factorsNeurotrophinNerve growth factorNeural stem cellBiologyRegeneration (biology)Growth factorSpinal cordGlial cell line-derived neurotrophic factorCell biology
MeSH terms
AnimalsAxonsCell DifferentiationCell DivisionCell MovementCells, CulturedDisease Models, AnimalFemaleGraft SurvivalHumansNeckNerve Growth FactorsNeuronsRats, Inbred F344RNA, Messenger
Funding
- National Science Council
Citations
863
FWCI
13.48
field-weighted impact
References
46
Percentile
100%
vs. same field & year
Citations per year
Cited by
Induction of bone marrow stromal cells to neurons: Differentiation, transdifferentiation, or artifact?
Journal of Neuroscience Research · 2004 · 434 citations
References
Pluripotent Stem Cells Engrafted into the Normal or Lesioned Adult Rat Spinal Cord Are Restricted to a Glial Lineage
Experimental Neurology · 2001 · 487 citations
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