Victor Chizhikov

Affiliations: 
Human Genetics University of Chicago, Chicago, IL 
Area:
developmental neurogenetics
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"Victor Chizhikov"
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Publications

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Smith KS, Bihannic L, Gudenas BL, et al. (2022) Unified rhombic lip origins of group 3 and group 4 medulloblastoma. Nature. 609: 1012-1020
Chizhikov VV, Iskusnykh IY, Steshina EY, et al. (2019) Early dorsomedial tissue interactions regulate gyrification of distal neocortex. Nature Communications. 10: 5192
Kridsada K, Niu J, Haldipur P, et al. (2018) Roof Plate-Derived Radial Glial-like Cells Support Developmental Growth of Rapidly Adapting Mechanoreceptor Ascending Axons. Cell Reports. 23: 2928-2941
Lin CY, Erkek S, Tong Y, et al. (2016) Active medulloblastoma enhancers reveal subgroup-specific cellular origins. Nature
Haldipur P, Gillies G, Janson OK, et al. (2015) Mesenchymal Foxc1 non-autonomously controls cerebellar development through SDF1α-CXCR4 maintenance of radial glial cells. International Journal of Developmental Neuroscience : the Official Journal of the International Society For Developmental Neuroscience. 47: 34
Shih EK, Sekerková G, Ohtsuki G, et al. (2015) The Spontaneous Ataxic Mouse Mutant Tippy is Characterized by a Novel Purkinje Cell Morphogenesis and Degeneration Phenotype. Cerebellum (London, England). 14: 292-307
Haldipur P, Gillies GS, Janson OK, et al. (2014) Foxc1 dependent mesenchymal signalling drives embryonic cerebellar growth. Elife. 3
Millen KJ, Steshina EY, Iskusnykh IY, et al. (2014) Transformation of the cerebellum into more ventral brainstem fates causes cerebellar agenesis in the absence of Ptf1a function. Proceedings of the National Academy of Sciences of the United States of America. 111: E1777-86
Chizhikov VV, Millen KJ. (2013) Neurogenesis in the Cerebellum Comprehensive Developmental Neuroscience: Patterning and Cell Type Specification in the Developing Cns and Pns. 417-434
Blank MC, Grinberg I, Aryee E, et al. (2011) Multiple developmental programs are altered by loss of Zic1 and Zic4 to cause Dandy-Walker malformation cerebellar pathogenesis. Development (Cambridge, England). 138: 1207-16
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