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THE POSSIBILITY OF PARALYTIC EFFECTS OF SELECTED SEA STARS AND BRITTLE-STARS ON OCTUPUS BIMACULATUS., BURRAGE BR., Trans Kans Acad Sci. January 1, 1964; 67 496-8.


The synthesis of ribonucleic acid in sea urchin embryos., WILT FH., Biochem Biophys Res Commun. June 20, 1963; 11 447-51.


THE EFFECTS OF CARBON MONOXIDE INHIBITION ON ATP LEVEL AND THE RATE OF MITOSIS IN THE SEA URCHIN EGG., Epel D., J Cell Biol. May 1, 1963; 17 (2): 315-9.


The ATPase activity of the mitotic apparatus of the sea urchin egg. Exp Cell Res 29:92-101, Jan 63 related compounds., MIKI T., Chem Pharm Bull (Tokyo). January 1, 1963; 11 95-103.


THE CELLULAR BASIS OF MORPHOGENESIS AND SEA URCHIN DEVELOPMENT., GUSTAFSON T, WOLPERT L., Int Rev Cytol. January 1, 1963; 15 139-214.


The isolation of nuclei from eggs and embryos of the sea urchin., HINEGARDNER RT., J Cell Biol. December 1, 1962; 15 503-8.


The mitotic apparatus. Fine structure of the isolated unit., KANE RE., J Cell Biol. November 1, 1962; 15 279-87.


The gelating effect of lower doses of trypsin on sea urchin eggs and its removal by exposure to glutathione., RUNNSTROM J, KRISZAT G., Exp Cell Res. October 1, 1962; 28 192-207.


The deoxyribonucleoproteins of sea urchin sperm extraction and analyses., MESSINEO L., Arch Biochem Biophys. March 1, 1962; 96 479-85.


The intracellular distribution and heterogeneity of ribonucleic acid in starfish oocytes., EDSTROM JE, GRAMPP W, SCHOR N., J Biophys Biochem Cytol. December 1, 1961; 11 549-57.


The role of the cortical granules in the formation of the fertilization membrane in the eggs of sea urchins. II., ENDO Y., Exp Cell Res. December 1, 1961; 25 518-28.


The DNA content of isolated sea urchin egg nuclei., HINEGARDNER RT., Exp Cell Res. November 1, 1961; 25 341-7.


The presence of centrioles in artificially activated sea urchin eggs., DIRKSEN ER., J Biophys Biochem Cytol. October 1, 1961; 11 244-7.


The effect of puromycin on protein metabolism and cell division in fertilized sea urchin eggs., HULTIN T., Experientia. September 15, 1961; 17 410-1.


The direct isolation of the mitotic apparatus., MAZIA D, MITCHISON JM, MEDINA H, HARRIS P., J Biophys Biochem Cytol. August 1, 1961; 10 467-74.


The role of nuclear metabolism in the determination of the sea urchin egg., RUNNSTROM J., Pathol Biol. April 1, 1961; 9 781-5.


The venomous sea-urchin Toxopneustes pileolus., ENDEAN R., Med J Aust. March 4, 1961; 48(1) 320.


The effects of hyperatmospheric oxygen concentrations on early cleavage in the sand dollar, Echinarachnius parma: Studies with an optical-pressure vessel., ROSENBAUM RM, WITTNER M., Exp Cell Res. August 1, 1960; 20 416-27.


The effect of teracycline on skeletal development in the larval sand dollar (Echinarachnius parma)., BEVELANDER G, GOLDBERG L, NAKAHARA H., Arch Oral Biol. July 1, 1960; 2 127-30.


The first cleavage furrow in sea urchin eggs does not pass through the sperm entrance point., ENDO Y., Exp Cell Res. March 1, 1960; 19 432-4.


The effect of partial protein extraction on the structure of the eggs of the sea urchin, Arbacia punctulata., KANE RE., J Biophys Biochem Cytol. February 1, 1960; 7 21-6.


The Multiplicity of the Mitotic Centers and the Time-Course of Their Duplication and Separation., Mazia D, Harris PJ, Bibring T., J Biophys Biochem Cytol. February 1, 1960; 7 (1): 1-20.


The response of Arbacia plutei to added amino acids., ROEDER M., J Cell Comp Physiol. December 1, 1959; 54 287-9.


The enzymatic deamination of 5''-deoxycytidylic acid and of 5-methyl-5''-deoxycytidylic acid in the developing sea urchin embryo., SCARANO E, MAGGIO R., Exp Cell Res. October 1, 1959; 18 333-46.


The origin and fate of annulate lamellae in maturing sand dollar eggs., MERRIAM RW., J Biophys Biochem Cytol. January 25, 1959; 5 (1): 117-22.


The isolation and preliminary characterization of a major soluble protein of the sea urchin egg., KANE RE, HERSH RT., Exp Cell Res. January 1, 1959; 16 (1): 59-69.


The influence of jelly coat solution on sea urchin spermatozoa., HAGSTROM BE., Exp Cell Res. January 1, 1959; 16 (1): 184-92.


The effect of sugars on differentiation of larvae of Psammechinus miliaris., HORSTADIUS S., J Exp Zool. January 1, 1959; 142 141-58.


The fine-structure of the mitotic spindle in sea urchin eggs., GROSS PR, PHILPOTT DE, NASS S., J Ultrastruct Res. November 1, 1958; 2 (1): 55-72.


The time sequence of early events in the fertilization of sea urchin eggs. II. The production of acid., MARKMAN B, ALLEN RD, ROWE EC., Exp Cell Res. October 1, 1958; 15 (2): 346-9.


The contribution of lower oxides of osmium to the density of biological specimens in electron microscopy., MERRIAM RW., J Biophys Biochem Cytol. September 25, 1958; 4 (5): 579-82.


The cytochrome system in mitochondria of unfertilized sea urchin eggs., MAGGIO R, GHIRETTI-MAGALDI A., Exp Cell Res. August 1, 1958; 15 (1): 95-102.


The time sequence of early events in the fertilization of sea urchin eggs. I. The latent period and the cortical reaction., ALLEN RD, GRIFFIN JL., Exp Cell Res. August 1, 1958; 15 (1): 163-73.


The contents of nucleotide pyrophosphates in ageing sea urchin sperms., HULTIN T., Exp Cell Res. June 1, 1958; 14 (3): 633-5.


The metabolic utilization of C14-formate in sea urchin embryos., HULTIN T., Exp Cell Res. June 1, 1957; 12 (3): 518-25.


The solidifying effect of certain oxidation reduction indicators on the surface of the unfertilized sea urchin egg., RUNNSTROM J, KRISZAT G., Exp Cell Res. June 1, 1957; 12 (3): 526-36.


The density of sea urchin eggs, embryos and larvae., SALZEN EA., Exp Cell Res. June 1, 1957; 12 (3): 615-25.


The membrane capacitance of the sea urchin egg., ROTHSCHILD., J Biophys Biochem Cytol. January 25, 1957; 3 (1): 103-10.


The animalizing effect of alpha-lipoic acid on sea urchin eggs., RUNNSTROM J., Exp Cell Res. December 1, 1956; 11 (3): 660-4.


The life-history of Paramacroderoides echinus venard, 1941, a trematode of the Florida gar, Lepisosteus platyrhincus., LEIGH WH, HOLLIMAN RB., J Parasitol. August 1, 1956; 42 (4 Section 1): 400-7.


The influence of the jelly coat in situ and in solution on cross fertilization in sea urchins., HAGSTROM BE., Exp Cell Res. August 1, 1956; 11 (2): 306-16.


The total content of ascorbic acid in the developing sea urchin egg., BACKSTROM S., Exp Cell Res. August 1, 1956; 11 (2): 322-6.


The action of oestradiol on desoxyribonucleoprotein as the cause of its inhibitory effect upon mitosis in the sea urchin embryo., AGRELL I, PERSSON H., Biochim Biophys Acta. June 1, 1956; 20 (3): 543-6.


The ultrastructure of the cortical granules and their products in the sea urchin egg as studied with the electron microscope., AFZELIUS BA., Exp Cell Res. April 1, 1956; 10 (2): 257-85.


The role of mucopolysaccharides in the fertilization of the sea urchin egg., RUNNSTROM J, IMMERS J., Exp Cell Res. April 1, 1956; 10 (2): 354-63.


Trypsin sensitivity of some proteins of the sea-urchin egg before and after fertilization; an electrophoretic analysis., D'AMELIO V., Experientia. November 15, 1955; 11 (11): 443.


The Feulgen reaction in mature unfertilized sea urchin egg., BURGOS MH., Exp Cell Res. October 1, 1955; 9 (2): 360-3.


The action of urea on some proteins of the unfertilized and fertilized sea urchin egg., CEAS MP, IMPELLIZZERI MA, MONROY A., Exp Cell Res. October 1, 1955; 9 (2): 366-9.


The distribution of mitochondria in sea urchin embryos., SHAVER JR., Experientia. September 15, 1955; 11 (9): 351-3.


The fertilization reaction in isolated cortical material from sea urchin eggs., ALLEN RD., Exp Cell Res. April 1, 1955; 8 (2): 397-9.

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