articleTop 10% cited
Glial cell line-derived neurotrophic factor reverses toxin-induced injury to midbrain dopaminergic neurons in vivo
Neuroscience Letters · 1994 · Vol. 182(1) · pp. 107–111
Barry J. Hoffer✉(University of Colorado Health)Alexander F. Hoffman(University of Colorado Health)Kate Bowenkamp(University of Colorado Health)Peter Huettl(University of Colorado Health)John L. Hudson(University of Colorado Health)David E. MartinLeu‐Fen H. LinGreg A. Gerhardt(University of Colorado Health)
Nerve injury and regenerationParkinson's Disease Mechanisms and TreatmentsNeurological disorders and treatmentsGlial cell line-derived neurotrophic factorMedial forebrain bundleSubstantia nigraNeurotrophic factorsOxidopamineStriatumDopaminergicDopamineEndocrinologyNeurochemical
MeSH terms
AnimalsBehavior, AnimalCell LineDopamineDose-Response Relationship, DrugInjectionsMaleMesencephalonNerve Growth FactorsNeurogliaNeuronsRats, Inbred F344RotationStereotyped BehaviorSubstantia Nigra
Citations
461
FWCI
8.09
field-weighted impact
References
27
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99%
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Cited by
Classic toxin-induced animal models of Parkinson?s disease: 6-OHDA and MPTP
Cell and Tissue Research · 2004 · 807 citations
References
Brain dopamine and the syndromes of Parkinson and Huntington Clinical, morphological and neurochemical correlations
Journal of the Neurological Sciences · 1973 · 2,649 citations
Quantitative recording of rotational behavior in rats after 6-hydroxy-dopamine lesions of the nigrostriatal dopamine system
Brain Research · 1970 · 1,981 citations
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