Aged Tmem106b knockout mice display gait deficits in coincidence with Purkinje cell loss and only limited signs of non‐motor dysfunction is a research paper published in Brain Pathology (2021). On theSindex it has a DataRank of 0.494. It has been cited 26 times.
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Base Score Contribution
0.494
From this paper's citation signal
Citation Network Contribution
0
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This paper's DataRank is currently driven only by its base citation score. Citation network data was not refreshed for this result.
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Grant: Incentivo/SAU/LA0002/2013
Incentive - LA 2 - 2013
Influential Citations
1
Fields of Study
Keywords
Sustainable Development Goals
Additional file 1 of TMEM106B deficiency impairs cerebellar myelination and synaptic integrity with Purkinje cell loss
Additional file 1 of TMEM106B deficiency impairs cerebellar myelination and synaptic integrity with Purkinje cell loss
Additional file 1 of Lack of a protective effect of the Tmem106b “protective SNP” in the Grn knockout mouse model for frontotemporal lobar degeneration
Additional file 1 of Lack of a protective effect of the Tmem106b “protective SNP” in the Grn knockout mouse model for frontotemporal lobar degeneration
Additional file 2 of Lack of a protective effect of the Tmem106b “protective SNP” in the Grn knockout mouse model for frontotemporal lobar degeneration
Additional file 2 of Lack of a protective effect of the Tmem106b “protective SNP” in the Grn knockout mouse model for frontotemporal lobar degeneration
Additional file 2 of The major TMEM106B dementia risk allele affects TMEM106B protein levels, fibril formation, and myelin lipid homeostasis in the ageing human hippocampus
Additional file 2 of The major TMEM106B dementia risk allele affects TMEM106B protein levels, fibril formation, and myelin lipid homeostasis in the ageing human hippocampus
Additional file 1 of The major TMEM106B dementia risk allele affects TMEM106B protein levels, fibril formation, and myelin lipid homeostasis in the ageing human hippocampus
Additional file 1 of The major TMEM106B dementia risk allele affects TMEM106B protein levels, fibril formation, and myelin lipid homeostasis in the ageing human hippocampus