Lactate Metabolism, Signaling, and Function in Brain Development, Synaptic Plasticity, Angiogenesis, and Neurodegenerative Diseases is a research paper published in International Journal of Molecular Sciences (2023). On theSindex it has a DataRank of 0. It has been cited 139 times.
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NIA, NIH
Grant: AG045781
National Institutes of Health
Grant: 5R01AG045781-04
Retromer deficiency and Alzheimer's disease pathology
NIA NIH HHS
Grant: R01 AG045781
NIA NIH HHS
Grant: RF1 AG045781
FWCI
13.29
Citation Percentile
1.0%
Influential Citations
1
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 3 of 1H-NMR-based metabolomics reveals metabolic alterations in early development of a mouse model of Angelman syndrome
Additional file 3 of 1H-NMR-based metabolomics reveals metabolic alterations in early development of a mouse model of Angelman syndrome
Additional file 4 of 1H-NMR-based metabolomics reveals metabolic alterations in early development of a mouse model of Angelman syndrome
Additional file 4 of 1H-NMR-based metabolomics reveals metabolic alterations in early development of a mouse model of Angelman syndrome
Additional file 5 of 1H-NMR-based metabolomics reveals metabolic alterations in early development of a mouse model of Angelman syndrome
Additional file 5 of 1H-NMR-based metabolomics reveals metabolic alterations in early development of a mouse model of Angelman syndrome
Additional file 2 of 1H-NMR-based metabolomics reveals metabolic alterations in early development of a mouse model of Angelman syndrome
Additional file 2 of 1H-NMR-based metabolomics reveals metabolic alterations in early development of a mouse model of Angelman syndrome
Additional file 1 of 1H-NMR-based metabolomics reveals metabolic alterations in early development of a mouse model of Angelman syndrome
Additional file 1 of 1H-NMR-based metabolomics reveals metabolic alterations in early development of a mouse model of Angelman syndrome