Timothy J. Petros, Ph.D.

Affiliations: 
Neuroscience New York University, New York, NY, United States 
Area:
Developmental Neuroscience
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"Timothy Petros"
Mean distance: 14.5 (cluster 11)
 
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Parents

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Stewart A. Anderson grad student
Gord J. Fishell grad student
Carol A. Mason grad student 2009 Columbia
 (Retinal projections of the optic chiasm: To cross or not to cross.)
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Publications

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Quattrocolo G, Isaac M, Zhang Y, et al. (2018) Homochronic Transplantation of Interneuron Precursors into Early Postnatal Mouse Brains. Journal of Visualized Experiments : Jove
Quattrocolo G, Fishell G, Petros TJ. (2017) Heterotopic Transplantations Reveal Environmental Influences on Interneuron Diversity and Maturation. Cell Reports. 21: 721-731
Petros TJ, Bultje RS, Ross ME, et al. (2015) Apical versus Basal Neurogenesis Directs Cortical Interneuron Subclass Fate. Cell Reports
Miyoshi G, Young A, Petros T, et al. (2015) Prox1 Regulates the Subtype-Specific Development of Caudal Ganglionic Eminence-Derived GABAergic Cortical Interneurons. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 12869-89
Tyson JA, Goldberg EM, Maroof AM, et al. (2015) Duration of culture and sonic hedgehog signaling differentially specify PV versus SST cortical interneuron fates from embryonic stem cells. Development (Cambridge, England). 142: 1267-78
Petros TJ, Maurer CW, Anderson SA. (2013) Enhanced derivation of mouse ESC-derived cortical interneurons by expression of Nkx2.1. Stem Cell Research. 11: 647-56
Inan M, Petros TJ, Anderson SA. (2013) Losing your inhibition: linking cortical GABAergic interneurons to schizophrenia. Neurobiology of Disease. 53: 36-48
Petros TJ, Anderson SA. (2013) Tangential Migration: The Forebrain Cellular Migration and Formation of Neuronal Connections. 363-376
Kuwajima T, Yoshida Y, Takegahara N, et al. (2012) Optic chiasm presentation of Semaphorin6D in the context of Plexin-A1 and Nr-CAM promotes retinal axon midline crossing. Neuron. 74: 676-90
Petros TJ, Tyson JA, Anderson SA. (2011) Pluripotent stem cells for the study of CNS development. Frontiers in Molecular Neuroscience. 4: 30
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