Search
Leader | 00000nz a2200037n 45 0 | ||
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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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