Stewart A. Anderson
Affiliations: | Weill Cornell Research, New York, NY, United States |
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"Stewart Anderson"Mean distance: 15.21 (cluster 11) | S | N | B | C | P |
Children
Sign in to add traineeEfrain Antonio Ribeiro | research assistant | Weill Cornell Research | |
Elizabeth K. Lucas | post-doc | 2011- | Weill Cornell Research |
Timothy J. Petros | post-doc | 2009-2012 | Weill Cornell Medical College |
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Publications
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Fitzgerald M, Sotuyo N, Tischfield DJ, et al. (2020) Generation of cerebral cortical GABAergic interneurons from pluripotent stem cells. Stem Cells (Dayton, Ohio) |
Li J, Ryan SK, Deboer E, et al. (2019) Mitochondrial deficits in human iPSC-derived neurons from patients with 22q11.2 deletion syndrome and schizophrenia. Translational Psychiatry. 9: 302 |
Manley WF, Anderson SA. (2019) Dosage Counts: Correcting Trisomy-21-Related Phenotypes in Human Organoids and Xenografts. Cell Stem Cell. 24: 835-836 |
Taylor DM, Aronow BJ, Tan K, et al. (2019) The Pediatric Cell Atlas: Defining the Growth Phase of Human Development at Single-Cell Resolution. Developmental Cell |
Tischfield DJ, Anderson SA. (2017) Differentiation of Mouse Embryonic Stem Cells into Cortical Interneuron Precursors. Journal of Visualized Experiments : Jove |
Donegan JJ, Tyson JA, Branch SY, et al. (2017) Stem cell-derived interneuron transplants functionally integrate within the existing circuitry. Molecular Psychiatry. 22: 1369 |
Dimidschstein J, Chen Q, Tremblay R, et al. (2017) Corrigendum: A viral strategy for targeting and manipulating interneurons across vertebrate species. Nature Neuroscience. 20: 1033 |
Dimidschstein J, Chen Q, Tremblay R, et al. (2017) Addendum: A viral strategy for targeting and manipulating interneurons across vertebrate species. Nature Neuroscience. 20: 1033 |
Tischfield DJ, Saraswat DK, Furash A, et al. (2017) Loss of the neurodevelopmental gene Zswim6 alters striatal morphology and motor regulation. Neurobiology of Disease |
Tischfield DJ, Kim J, Anderson SA. (2017) Atypical PKC and Notch Inhibition Differentially Modulate Cortical Interneuron Subclass Fate from Embryonic Stem Cells. Stem Cell Reports |