VIAF

Virtual International Authority File

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Leader 00000nz a2200037n 45 0
001 WKP|Q39395048 (VIAF cluster) (Authority/Source Record)
003 WKP
005 20241121000229.0
008 241121nneanz||abbn n and d
035 ‎‡a (WKP)Q39395048‏
024 ‎‡a 0000-0001-9131-5849‏ ‎‡2 orcid‏
035 ‎‡a (OCoLC)Q39395048‏
100 0 ‎‡a James Smith‏ ‎‡9 nl‏ ‎‡9 es‏ ‎‡9 sl‏ ‎‡9 ast‏
375 ‎‡a 1‏ ‎‡2 iso5218‏
400 0 ‎‡a জেমস স্মিথ‏ ‎‡9 bn‏
400 0 ‎‡a James Smith‏ ‎‡c researcher ORCID: 0000-0001-9131-5849‏ ‎‡9 en‏
670 ‎‡a Author's A human stem cell model of early Alzheimer's disease pathology in Down syndrome‏
670 ‎‡a Author's A role for Dicer in immune regulation‏
670 ‎‡a Author's APP metabolism regulates tau proteostasis in human cerebral cortex neurons‏
670 ‎‡a Author's Extracellular Monomeric and Aggregated Tau Efficiently Enter Human Neurons through Overlapping but Distinct Pathways.‏
670 ‎‡a Author's Ezh2, the histone methyltransferase of PRC2, regulates the balance between self-renewal and differentiation in the cerebral cortex‏
670 ‎‡a Author's Functional Studies of Missense TREM2 Mutations in Human Stem Cell-Derived Microglia.‏
670 ‎‡a Author's Genomic characterisation of a Fgf-regulated gradient-based neocortical protomap‏
670 ‎‡a Author's Human cerebral cortex development from pluripotent stem cells to functional excitatory synapses‏
670 ‎‡a Author's Imatinib treatment and Aβ42 in humans.‏
670 ‎‡a Author's Reproducibility of Molecular Phenotypes after Long-Term Differentiation to Human iPSC-Derived Neurons: A Multi-Site Omics Study‏
670 ‎‡a Author's Reversible block of mouse neural stem cell differentiation in the absence of dicer and microRNAs.‏
670 ‎‡a Author's The level of the transcription factor Pax6 is essential for controlling the balance between neural stem cell self-renewal and neurogenesis‏
909 ‎‡a (orcid) 0000000191315849‏ ‎‡9 1‏
919 ‎‡a humanstemcellmodelofearlyalzheimersdiseasepathologyindownsyndrome‏ ‎‡A A human stem cell model of early Alzheimer's disease pathology in Down syndrome‏ ‎‡9 1‏
919 ‎‡a rolefordicerinimmuneregulation‏ ‎‡A A role for Dicer in immune regulation‏ ‎‡9 1‏
919 ‎‡a appmetabolismregulatestauproteostasisinhumancerebralcortexneurons‏ ‎‡A APP metabolism regulates tau proteostasis in human cerebral cortex neurons‏ ‎‡9 1‏
919 ‎‡a extracellularmonomericandaggregatedtauefficientlyenterhumanneuronsthroughoverlappingbutdistinctpathways‏ ‎‡A Extracellular Monomeric and Aggregated Tau Efficiently Enter Human Neurons through Overlapping but Distinct Pathways.‏ ‎‡9 1‏
919 ‎‡a ezh2thehistonemethyltransferaseofprc2regulatesthebalancebetweenselfrenewalanddifferentiationinthecerebralcortex‏ ‎‡A Ezh2, the histone methyltransferase of PRC2, regulates the balance between self-renewal and differentiation in the cerebral cortex‏ ‎‡9 1‏
919 ‎‡a functionalstudiesofmissensetrem2mutationsinhumanstemcellderivedmicroglia‏ ‎‡A Functional Studies of Missense TREM2 Mutations in Human Stem Cell-Derived Microglia.‏ ‎‡9 1‏
919 ‎‡a genomiccharacterisationofafgfregulatedgradientbasedneocorticalprotomap‏ ‎‡A Genomic characterisation of a Fgf-regulated gradient-based neocortical protomap‏ ‎‡9 1‏
919 ‎‡a humancerebralcortexdevelopmentfrompluripotentstemcellstofunctionalexcitatorysynapses‏ ‎‡A Human cerebral cortex development from pluripotent stem cells to functional excitatory synapses‏ ‎‡9 1‏
919 ‎‡a imatinibtreatmentandaβ42inhumans‏ ‎‡A Imatinib treatment and Aβ42 in humans.‏ ‎‡9 1‏
919 ‎‡a reproducibilityofmolecularphenotypesafterlongtermdifferentiationtohumanipscderivedneuronsamultisiteomicsstudy‏ ‎‡A Reproducibility of Molecular Phenotypes after Long-Term Differentiation to Human iPSC-Derived Neurons: A Multi-Site Omics Study‏ ‎‡9 1‏
919 ‎‡a reversibleblockofmouseneuralstemcelldifferentiationintheabsenceofdicerandmicrornas‏ ‎‡A Reversible block of mouse neural stem cell differentiation in the absence of dicer and microRNAs.‏ ‎‡9 1‏
919 ‎‡a levelofthetranscriptionfactorpax6isessentialforcontrollingthebalancebetweenneuralstemcellselfrenewalandneurogenesis‏ ‎‡A The level of the transcription factor Pax6 is essential for controlling the balance between neural stem cell self-renewal and neurogenesis‏ ‎‡9 1‏
946 ‎‡a b‏ ‎‡9 1‏
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997 ‎‡a 0 0 lived 0 0‏ ‎‡9 1‏