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Alzheimer'S & Dementia : the Journal of the Alzheimer'S Association|December 23, 2025
Basic Science and PathogenesisMatheus B VictorCell Metabolism|September 7, 2022
Walking the high wire: How neurons maintain stability in the crossline of neurodegenerationMatheus B Victor, Li-Huei TsaiNature Reviews. Neurology|November 9, 2021
Dissecting the complexities of Alzheimer disease with in vitro models of the human brainJoel W Blanchard, Matheus B Victor, Li-Huei TsaiNature Protocols|September 18, 2015
MicroRNA-based conversion of human fibroblasts into striatal medium spiny neuronsMichelle Richner, Matheus B Victor, Yangjian Liu, et al.Elife|September 21, 2016
Maintenance of age in human neurons generated by microRNA-based neuronal conversion of fibroblastsChristine J Huh, Bo Zhang, Matheus B Victor, et al.Bioinformatics (Oxford, England)|June 29, 2018
LONGO: an R package for interactive gene length dependent analysis for neuronal identityMatthew J McCoy, Alexander J Paul, Matheus B Victor, et al.Neuron|November 7, 2014
Generation of human striatal neurons by microRNA-dependent direct conversion of fibroblastsMatheus B Victor, Michelle Richner, Tracey O Hermanstyne, et al.Research Square|May 22, 2023
Longitudinal modeling of human neuronal aging identifies RCAN1-TFEB pathway contributing to neurodegeneration of Huntington's diseaseSeong Won Lee, Young Mi Oh, Matheus B Victor, et al.Nature Neuroscience|September 4, 2020
Author Correction: Striatal neurons directly converted from Huntington's disease patient fibroblasts recapitulate age-associated disease phenotypesMatheus B Victor, Michelle Richner, Hannah E Olsen, et al.Nature Neuroscience|February 7, 2018
Striatal neurons directly converted from Huntington's disease patient fibroblasts recapitulate age-associated disease phenotypesMatheus B Victor, Michelle Richner, Hannah E Olsen, et al.Pageof 3