Disease duration and the integrity of the nigrostriatal system in Parkinson’s disease is a research paper published in Brain (2013). On theSindex it has a DataRank of 1.1. It has been cited 1,348 times.
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Base Score Contribution
1.1
From this paper's citation signal
Citation Network Contribution
0
Citation network not refreshed for this result
This paper's DataRank is currently driven only by its base citation score. Citation network data was not refreshed for this result.
Learn more about DataRank methodology →NINDS NIH HHS
Grant: U24 NS072026
NIA NIH HHS
Grant: P30 AG019610
NIA NIH HHS
Grant: P30 AG19610
MeSH Terms
Keywords
Additional file 1 of In Parkinson's patient-derived dopamine neurons, the triplication of α-synuclein locus induces distinctive firing pattern by impeding D2 receptor autoinhibition
Additional file 1 of In Parkinson's patient-derived dopamine neurons, the triplication of α-synuclein locus induces distinctive firing pattern by impeding D2 receptor autoinhibition
Additional file 1 of Reliability of dopamine transporter PET measurements with [18F]FE-PE2I in patients with Parkinson’s disease
Additional file 1 of Reliability of dopamine transporter PET measurements with [18F]FE-PE2I in patients with Parkinson’s disease
Additional file 2 of In Parkinson's patient-derived dopamine neurons, the triplication of α-synuclein locus induces distinctive firing pattern by impeding D2 receptor autoinhibition
Additional file 2 of In Parkinson's patient-derived dopamine neurons, the triplication of α-synuclein locus induces distinctive firing pattern by impeding D2 receptor autoinhibition
Additional file 3 of In Parkinson's patient-derived dopamine neurons, the triplication of α-synuclein locus induces distinctive firing pattern by impeding D2 receptor autoinhibition
Additional file 3 of In Parkinson's patient-derived dopamine neurons, the triplication of α-synuclein locus induces distinctive firing pattern by impeding D2 receptor autoinhibition
Additional file 1 of Differential seeding and propagating efficiency of α-synuclein strains generated in different conditions
Additional file 1 of Differential seeding and propagating efficiency of α-synuclein strains generated in different conditions
Additional file 1 of Endosomal traffic and glutamate synapse activity are increased in VPS35 D620N mutant knock-in mouse neurons, and resistant to LRRK2 kinase inhibition
Additional file 1 of Endosomal traffic and glutamate synapse activity are increased in VPS35 D620N mutant knock-in mouse neurons, and resistant to LRRK2 kinase inhibition
Additional file 2 of Endosomal traffic and glutamate synapse activity are increased in VPS35 D620N mutant knock-in mouse neurons, and resistant to LRRK2 kinase inhibition
Additional file 2 of Endosomal traffic and glutamate synapse activity are increased in VPS35 D620N mutant knock-in mouse neurons, and resistant to LRRK2 kinase inhibition
Additional file 1 of Multiple-pinhole collimators improve intra- and between-rater agreement and the certainty of the visual interpretation in dopamine transporter SPECT
Additional file 1 of Multiple-pinhole collimators improve intra- and between-rater agreement and the certainty of the visual interpretation in dopamine transporter SPECT
Additional file 1 of Kinetic parameters of alpha-synuclein seed amplification assay correlate with cognitive impairment in patients with Lewy body disorders
Additional file 1 of Kinetic parameters of alpha-synuclein seed amplification assay correlate with cognitive impairment in patients with Lewy body disorders
Additional file 2 of Kinetic parameters of alpha-synuclein seed amplification assay correlate with cognitive impairment in patients with Lewy body disorders
Additional file 2 of Kinetic parameters of alpha-synuclein seed amplification assay correlate with cognitive impairment in patients with Lewy body disorders