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Results 1 to 25 of 66

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Developmental timing in fertilized merogones of the sand dollar, Clypeaster japonicusYONEDA, M; NOMURA, A.Development, growth & differentiation. 1991, Vol 33, Num 4, pp 391-400, issn 0012-1592Article

Dermatan sulfate formation in gastrulae of the sea urchin Clypeaster japonicusYAMAGUCHI, M; KINOSHITA, S; SUZUKI, N et al.Journal of biochemistry (Tokyo). 1989, Vol 106, Num 1, pp 158-162, issn 0021-924X, 5 p.Article

EFFECTS OF PHALLOIDIN MICROINJECTION AND LOCALIZATION OF FLUORESCEIN-LABELED PHALLOIDIN IN LIVING SAND DOLLAR EGGSHAMAGUCHI Y; MABUCHI I.1982; CELL MOTIL.; ISSN 0271-6585; USA; DA. 1982; VOL. 2; NO 2; PP. 103-113; BIBL. 2 P.Article

A new technique for introducing anti-fibronectin antibodies and fibronectin-related synthetic peptides into the blastulae of the sea urchin, Clypeaster japonicusKATOW, H.Development, growth & differentiation. 1990, Vol 32, Num 1, pp 33-39, issn 0012-1592Article

Occurrence of partial nuclei in eggs of the sand dollar, Clypeaster japonicusYONEDA, M; NEMOTO, S.The Biological bulletin (Lancaster). 1990, Vol 179, Num 2, pp 183-185, issn 0006-3185Article

FERTILIZATION PROCESS IN THE HEART-URCHIN, CLYPEASTER JAPONICUS OBSERVED WITH A DIFFERENTIAL INTERFERENCE MICROSCOPEHAMAGUCHI MS; HIRAMOTO Y.1980; DEV. GROWTH DIFFER.; ISSN 0012-1592; JPN; DA. 1980; VOL. 22; NO 3; PP. 517-530; BIBL. 19 REF.Article

THE ROLE OF INTRACELLULAR PH IN FERTILIZATION OF SAND DOLLAR EGGS ANALYZED BY MICROINJECTION METHODHAMAGUCHI MS.1982; DEVELOPMENT, GROWTH & DIFFERENTIATION; ISSN 0012-1592; JPN; DA. 1982; VOL. 24; NO 5; PP. 443-451; BIBL. 23 REF.Article

Effects of inhibitors of myosin light chain kinase and other protein kinases on the first cell division of sea urchin eggsMABUCCHI, I; TAKANO-OHMURO, H.Development, growth & differentiation. 1990, Vol 32, Num 5, pp 549-556, issn 0012-1592Article

Measurement of spindle birefringence by the optical integration methodNAKANO, Y; HIRAMOTO, Y.Zoological science. 1988, Vol 5, Num 3, pp 539-544, issn 0289-0003Article

Temperature-dependence in reaggregation of cells dissociated from sea urchin embryos with different seasonal growthFUJISAWA, H; AMEMIYA, S.Zoological science. 1988, Vol 5, Num 1, pp 85-92, issn 0289-0003Article

LOCATION OF THE MOTIVE FORCE FOR CHROMOSOME MOVEMENT IN SAND DOLLAR EGGSHIRAMOTO Y; SHOJI Y.1982; CELL DIFFERENTIATION; ISSN 0045-6039; NLD; DA. 1982; VOL. 11; NO 5-6; PP. 349-351; BIBL. 2 REF.Article

Cleavage furrow : timing of emergence of contractile ring actin filaments and establishment of the contractile ring by filament bundling in sea urchin eggsMABUCHI, I.Journal of Cell Science. 1994, Vol 107, pp 1853-1862, issn 0021-9533, 7Article

Elevation of cyclic AMP-dependent protein kinase activity during migration of primary mesenchyme cell in sand dollar BlastulaeKATOW, H; ISHIDA, K.Development, growth & differentiation. 1992, Vol 34, Num 5, pp 529-533, issn 0012-1592Article

Characterization of vegetal plate cells separated from cytochalasin B-treated blastulae of the sea urchin, Clypeaster japonicusKATOW, H.Development, growth & differentiation. 1989, Vol 31, Num 5, pp 439-446, issn 0012-1592, 8 p.Article

Two classes of receptor specific for sperm-activting peptide III in sand-dollar spermatozoaYOSHINO, K.-I; SUZUKI, N.European journal of biochemistry (Print). 1992, Vol 206, Num 3, pp 887-893, issn 0014-2956Article

Change in membrane fluidity of sand dollar egg cortices caused by Ca2+-induced exocytosis : microscopic analysis with fluorescence anisotropyHIRANO, K.Development, growth & differentiation. 1991, Vol 33, Num 5, pp 451-458, issn 0012-1592Article

A micronucleus assay in sea urchin embryosSAOTOME, K; SOFUNI, T; HAYASHI, M et al.Mutation research. Genetic toxicology and environmental mutagenesis. 1999, Vol 446, Num 1, pp 121-127, issn 1383-5718Article

The mechanism and physiological function of electrical changes during fertilization of sea urchin gametesKURODA, H; OBATA, S; TAKEMOTO, K et al.Zoological science. 1988, Vol 5, Num 4, pp 733-742, issn 0289-0003Article

Purification and structure of mosact and its derivatives from the egg jelly of the sea urchin Clypeaster japonicusSUZUKI, N; KURITA, M; YOSHINO, K.-I et al.Zoological science. 1987, Vol 4, Num 4, pp 649-656, issn 0289-0003Article

Reduced planktotrophy in larvae of Clypeaster rosaceus (Echinodermata, Echiniodea)REITZEL, Adam M; MINER, Benjamin G.Marine biology (Berlin). 2007, Vol 151, Num 4, pp 1525-1534, issn 0025-3162, 10 p.Article

THE ROLE OF PROTEOGLYCAN IN THE DEVELOPMENT OF SEA URCHINS. I: ABNORMAL DEVELOPMENT OF SEA URCHIN EMBRYOS CAUSED BY THE DISTURBANCE OF PROTEOGLYCAN SYNTHESISKINOSHITA S; SAIGA H.1979; EXPER. CELL RES.; USA; DA. 1979; VOL. 123; NO 2; PP. 229-236; BIBL. 45 REF.Article

Heterogeneity of microtubules in dividing sea urchin eggs revealed by immunofluorescence microscopy : spindle microtubules are composed of tubulin isotypes different from those of astral microtubulesOKA, M. T; ARAI, T; HAMAGUCHI, Y et al.Cell motility and the cytoskeleton. 1990, Vol 16, Num 4, pp 239-250, issn 0886-1544, 12 p.Article

Feeding activities of two species of Clypeaster (Echinoides, Clypeasteroida): further evidence of clypeasteroid resource partitioningTELFORD, M; MOOI, R; HAROLD, A. S et al.The Biological bulletin (Lancaster). 1987, Vol 172, Num 3, pp 324-336, issn 0006-3185Article

INHIBITION BY APHIDICOLIN OF CELL CYCLE PROGRESSION AND DNA REPLICATION IN SEA URCHIN EMBRYOSIKEGAMI S; AMEMIYA S; OGURO M et al.1979; J. CELL. PHYSIOL.; USA; DA. 1979; VOL. 100; NO 3; PP. 439-444; BIBL. 17 REF.Article

MITOTIC ABNORMALITIES IN SEA URCHIN EMBRYOS DURING THE EARLY CLEAVAGE STAGES INDUCED BY ULTRAVIOLET IRRADIATION OF SPERMEJIMA Y; SHIROYA T; EGAMI N et al.1978; J. FAC. SCI., UNIV. TOKYO, 4; JPN; DA. 1978; VOL. 14; NO 2; PP. 177-189; BIBL. 12 REF.Article

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