Michael V. Danilchik

Affiliations: 
Oregon Health and Science University, Portland, OR 
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"Michael Danilchik"

Parents

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Merrill Hille grad student 1975-1981 University of Washington (Neurotree)
 (FUNCTION OF RIBOSOMES DURING EARLY DEVELOPMENT OF THE SEA URCHIN STRONGYLOCENTROTUS PURPURATUS)
Raymond Keller post-doc UC Berkeley
John Gerhart post-doc 1982-1987 UC Berkeley

Children

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Steven D. Bedrick research assistant 2002 OHSU (Biomedical Informatics)
James Denegre grad student 1988-1992 Wesleyan University (Middletown, CT)
John B. Wallingford grad student 1990-1992 Wesleyan University (Middletown, CT)
Robert M. Savage grad student 1988-1993 Wesleyan University (Middletown, CT)
Kay Larkin grad student 1994-1999 OHSU

Collaborators

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Raymond Keller collaborator OHSU
BETA: Related publications

Publications

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Danilchik M, Tumarkin T. (2017) Exosomal trafficking in Xenopus development. Genesis (New York, N.Y. : 2000). 55
Hasley A, Chavez S, Danilchik M, et al. (2017) Vertebrate Embryonic Cleavage Pattern Determination. Advances in Experimental Medicine and Biology. 953: 117-171
Danilchik M, Williams M, Brown E. (2013) Blastocoel-spanning filopodia in cleavage-stage Xenopus laevis: Potential roles in morphogen distribution and detection. Developmental Biology. 382: 70-81
Beyer T, Danilchik M, Thumberger T, et al. (2012) Serotonin signaling is required for Wnt-dependent GRP specification and leftward flow in Xenopus. Current Biology : Cb. 22: 33-9
Schweickert A, Walentek P, Thumberger T, et al. (2012) Linking early determinants and cilia-driven leftward flow in left–right axis specification of Xenopus laevis: A theoretical approach Differentiation. 83
Blum M, Walentek P, Beyer T, et al. (2012) Serotonin and ATP4 are required for Wnt signaling and cilia-driven leftward flow in Xenopus Cilia. 1
Beyer T, Vick P, Thumberger T, et al. (2010) Serotonin and Wnt signaling are required for morphogenesis of the gastrocoel roof plate epithelium, the site of symmetry breakage in the frog embryo Developmental Biology. 344: 450
Danilchik MV, Brown EE, Riegert K. (2006) Intrinsic chiral properties of the Xenopus egg cortex: An early indicator of left-right asymmetry Development. 133: 4517-4526
Danilchik M, Brown B, Riegert K. (2006) Intrinsic chirality of the Xenopus egg cortex and left–right axis patterning Developmental Biology. 295: 443
Danilchik MV, Bedrick SD, Brown EE, et al. (2003) Furrow microtubules and localized exocytosis in cleaving Xenopus laevis embryos Journal of Cell Science. 116: 273-283
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