The cell biology of synapse formation is a research paper published in The Journal of Cell Biology (2021). On theSindex it has a DataRank of 0. It has been cited 369 times.
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National Institutes of Health
Grant: MH052804
National Institutes of Health
Grant: AG048131
National Institutes of Health
Grant: MH092931
NIMH NIH HHS
Grant: R01 MH092931
NIA NIH HHS
Grant: RF1 AG048131
NIMH NIH HHS
Grant: R01 MH052804
NIMH NIH HHS
Grant: R37 MH052804
National Institutes of Health
Grant: 2R37MH052804-06
FUNCTION OF NEUREXINS
National Institutes of Health
Grant: 1RF1AG048131-01
Probing Alzheimer synaptopathy in neurons derived from engineered human iPS cells
National Institutes of Health
Grant: 1R01MH092931-01
Direct conversion of fibroblasts into neurons: A novel approach to study neuropsy
Howard Hughes Medical Institute
Howard Hughes Medical Institute
FWCI
22.94
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Mitochondrial impairment and synaptic dysfunction are associated with neurological defects in iPSCs-derived cortical neurons of MERRF patients
Additional file 1 of Mitochondrial impairment and synaptic dysfunction are associated with neurological defects in iPSCs-derived cortical neurons of MERRF patients
Additional file 2 of Mitochondrial impairment and synaptic dysfunction are associated with neurological defects in iPSCs-derived cortical neurons of MERRF patients
Additional file 2 of Mitochondrial impairment and synaptic dysfunction are associated with neurological defects in iPSCs-derived cortical neurons of MERRF patients
Additional file 3 of Mitochondrial impairment and synaptic dysfunction are associated with neurological defects in iPSCs-derived cortical neurons of MERRF patients
Additional file 3 of Mitochondrial impairment and synaptic dysfunction are associated with neurological defects in iPSCs-derived cortical neurons of MERRF patients
Additional file 1 of Effects of MAP4K inhibition on neurite outgrowth
Additional file 1 of Effects of MAP4K inhibition on neurite outgrowth
Additional file 1 of Complement C1q-mediated microglial synaptic elimination by enhancing desialylation underlies sevoflurane-induced developmental neurotoxicity
Additional file 1 of Complement C1q-mediated microglial synaptic elimination by enhancing desialylation underlies sevoflurane-induced developmental neurotoxicity
Additional file 2 of Complement C1q-mediated microglial synaptic elimination by enhancing desialylation underlies sevoflurane-induced developmental neurotoxicity
Additional file 2 of Complement C1q-mediated microglial synaptic elimination by enhancing desialylation underlies sevoflurane-induced developmental neurotoxicity