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Summary Anatomy Item Literature (369) Expression Attributions Wiki
XB-ANAT-521

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Induction of blood cells in Xenopus embryo explants., Miyanaga Y., Dev Genes Evol. January 1, 1998; 207 (7): 417-26.


Analysis of factors controlling primary germ layer formation and early hematopoiesis using embryonic stem cell in vitro differentiation., Wiles MV., Leukemia. April 1, 1997; 11 Suppl 3 454-6.


Expression of type XII collagen by wound epithelial, mesenchymal, and ependymal cells during blastema formation in regenerating newt (Notophthalmus viridescens) tails., Wei Y., J Morphol. November 1, 1996; 230 (2): 177-86.


Mouse-Musashi-1, a neural RNA-binding protein highly enriched in the mammalian CNS stem cell., Sakakibara S., Dev Biol. June 15, 1996; 176 (2): 230-42.


Autonomous proliferation of neural precursors in the tadpole retina revealed after partial removal of the embryonic eyebud., Wetts R., Brain Res Dev Brain Res. May 26, 1995; 86 (1-2): 57-66.


A Xenopus c-kit-related receptor tyrosine kinase expressed in migrating stem cells of the lateral line system., Baker CV., Mech Dev. April 1, 1995; 50 (2-3): 217-28.    


Intraembryonic origin of hepatic hematopoiesis in Xenopus laevis., Chen XD., J Immunol. March 15, 1995; 154 (6): 2557-67.


Sequence, genomic organization, and expression of the novel homeobox gene Hesx1., Thomas PQ., J Biol Chem. February 24, 1995; 270 (8): 3869-75.


Primitive streak mesoderm-like cell lines expressing Pax-3 and Hox gene autoinducing activities., Pruitt SC., Development. January 1, 1994; 120 (1): 37-47.


Xenopus A-myb is expressed during early spermatogenesis., Sleeman JP., Oncogene. July 1, 1993; 8 (7): 1931-41.


Murine stem cell factor stimulates erythropoietic differentiation of ventral mesoderm in Xenopus gastrula embryo., Ong RC., Exp Cell Res. April 1, 1993; 205 (2): 326-30.


Differential stem cell contributions to thymocyte succession during development of Xenopus laevis., Bechtold TE., J Immunol. May 15, 1992; 148 (10): 2975-82.


Location of hemopoietic stem cells influences frequency of lymphoid engraftment in Xenopus embryos., Turpen JB., J Immunol. December 1, 1989; 143 (11): 3455-60.


Expression of intermediate filament proteins during development of Xenopus laevis. I. cDNA clones encoding different forms of vimentin., Herrmann H., Development. February 1, 1989; 105 (2): 279-98.                      


Precursor immigration and thymocyte succession during larval development and metamorphosis in Xenopus., Turpen JB., J Immunol. January 1, 1989; 142 (1): 41-7.


Cell patterning in pigment-chimeric eyes in Xenopus: germinal transplants and their contributions to growth of the pigmented retinal epithelium., Hunt RK., Proc Natl Acad Sci U S A. May 1, 1987; 84 (10): 3302-6.          


Dual contribution of embryonic ventral blood island and dorsal lateral plate mesoderm during ontogeny of hemopoietic cells in Xenopus laevis., Kau CL., J Immunol. November 1, 1983; 131 (5): 2262-6.


Formation of gap junctions by stem cells in the developing retina of the clawed frog (Xenopus laevis)., Fujisawa H., Anat Embryol (Berl). September 1, 1982; 165 (1): 141-9.


Thymocyte stem cell inflow in Xenopus laevis, after grafting diploid thymic rudiments into triploid tadpoles., Tochinai S., Dev Comp Immunol. October 1, 1978; 2 (4): 627-35.

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