about
Impact of the lesion procedure on the profiles of motor impairment and molecular responsiveness to L-DOPA in the 6-hydroxydopamine mouse model of Parkinson's disease.Investigating the molecular mechanisms of L-DOPA-induced dyskinesia in the mouse.Pharmacological stimulation of sigma-1 receptors has neurorestorative effects in experimental parkinsonism.Vascular endothelial growth factor is upregulated by L-dopa in the parkinsonian brain: implications for the development of dyskinesia.Sigma-1 receptor: a potential new target for Parkinson's disease?Dramatic differences in susceptibility to l-DOPA-induced dyskinesia between mice that are aged before or after a nigrostriatal dopamine lesion.Gene therapy blockade of dorsal striatal p11 improves motor function and dyskinesia in parkinsonian mice.M4 Muscarinic Receptor Signaling Ameliorates Striatal Plasticity Deficits in Models of L-DOPA-Induced DyskinesiaMolecular adaptations of striatal spiny projection neurons during levodopa-induced dyskinesia.Pathophysiology of L-dopa-induced motor and non-motor complications in Parkinson's disease.Rodent models of impulsive-compulsive behaviors in Parkinson's disease: How far have we reached?A model of GDNF gene therapy in mice with 6-Hydroxydopamine lesions: time course of Neurorestorative effects and ERK1/2 activation.M4 Muscarinic Receptor Signaling Ameliorates Striatal Plasticity Deficits in Models of L-DOPA-Induced Dyskinesia
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P50
description
hulumtuese
@sq
researcher
@en
wetenschapper
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հետազոտող
@hy
name
Veronica Francardo
@ast
Veronica Francardo
@en
Veronica Francardo
@es
Veronica Francardo
@nl
type
label
Veronica Francardo
@ast
Veronica Francardo
@en
Veronica Francardo
@es
Veronica Francardo
@nl
prefLabel
Veronica Francardo
@ast
Veronica Francardo
@en
Veronica Francardo
@es
Veronica Francardo
@nl
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0000-0002-4639-7862