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Development, Growth & Differentiation|June 7, 2023
Chronological Changes in the Accumulation of Poly(A)M WakaharaZoological Science|December 1, 1996
Heterochrony and neotenic salamanders: possible clues for understanding the animal development and evolutionM WakaharaThe International Journal of Developmental Biology|August 1, 1996
Primordial germ cell development: is the urodele pattern closer to mammals than to anurans?M WakaharaThe International Journal of Developmental Biology|August 1, 1997
Hemoglobin transition from larval to adult types occurs within a single erythroid cell population during metamorphosis of the salamander Hynobius retardatusM Yamaguchi, M WakaharaThe Journal of Experimental Zoology|April 9, 1999
Precocious testicular growth in metamorphosis-arrested larvae of a salamander Hynobius retardatus: role of thyroid-stimulating hormoneK Kanki, M WakaharaGeneral and Comparative Endocrinology|October 6, 2000
Spatio-temporal expression of TSH beta and FSH beta genes in normally metamorphosing, metamorphosed, and metamorphosis-arrested Hynobius retardatusK Kanki, M WakaharaThe International Journal of Developmental Biology|September 1, 1994
Dorsoventral polarization and formation of dorsal axial structures in Xenopus laevis: analyses using UV irradiation of the full-grown oocyte and after fertilizationN Mise, M WakaharaJournal of Embryology and Experimental Morphology|December 1, 1985
Cytological analyses of factors which determine the number of primordial germ cells (PGCs) in Xenopus laevisY Akita, M WakaharaDifferentiation; Research in Biological Diversity|November 12, 1998
Transformation of skin from larval to adult types in normally metamorphosing and metamorphosis-arrested salamander, Hynobius retardatusH Ohmura, M WakaharaThe International Journal of Developmental Biology|August 19, 2000
Conversion of red blood cells (RBCs) from the larval to the adult type during metamorphosis in Xenopus: specific removal of mature larval-type RBCs by apoptosisY Tamori, M WakaharaPageof 3