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Thymidine kinase, thymidylate kinase and 32P and [14C] thymidine incorporation into DNA during early embryogenesis of the sea urchin., Nagano H, Mano Y., Biochim Biophys Acta. May 21, 1968; 157 (3): 546-57.


The electrical activity of the radial nerve in Diadema antillarum Philippi and certain other echinoids., Millott N, Okumura H., J Exp Biol. April 1, 1968; 48 (2): 279-87.


The effects of selected chemical agents on furrow induction in the eggs of Arbacia punctualata., Zimmerman SB, Murakami TH, Zimmerman AM., Biol Bull. April 1, 1968; 134 (2): 356-66.


Transport of amino acids by starfish digestive glands., Ferguson JC., Comp Biochem Physiol. March 1, 1968; 24 (3): 921-31.


The mechanics and mechanism of cleavage in the sea-urchin egg., Hiramoto Y., Symp Soc Exp Biol. January 1, 1968; 22 311-27.


The fine structure of polian vesicles of holothurians., Baccetti B, Rosati F., Z Zellforsch Mikrosk Anat. January 1, 1968; 90 (1): 148-60.


The specificity of uptake of foreign proteins by coelomocytes of the purple sea urchin., Hilgard HR, Hinds WE, Phillips JH., Comp Biochem Physiol. December 1, 1967; 23 (3): 815-24.


The behaviour and localization of intracellular relaxing system during cleavage in the sea urchin egg., Kinoshita S, Yazaki I., Exp Cell Res. September 1, 1967; 47 (3): 449-58.


The distribution of quinone pigments in echinoderms., Singh H, Moore RE, Scheuer PJ., Experientia. August 15, 1967; 23 (8): 624-6.


The stimulation of amino acid incorporation into the protein of unfertilized sea urchin eggs by gamma-irradiation., Rustad RC., J Cell Physiol. August 1, 1967; 70 (1): 75-8.


The mechanism of action of colchicine. Colchicine binding to sea urchin eggs and the mitotic apparatus., Borisy GG, Taylor EW., J Cell Biol. August 1, 1967; 34 (2): 535-48.


The occurrence of ribosomal proteins in nucleoli of starfish oocytes., Mundell RD., Biochem Biophys Res Commun. July 10, 1967; 28 (1): 117-22.


The heterogeneity of thymine methyl group origin in DNA pyrimidine isostichs of developing sea urchin embryos., Scarano E, Iaccarino M, Grippo P, Parisi E., Proc Natl Acad Sci U S A. May 1, 1967; 57 (5): 1394-400.


The subcellular distributions of some hydrolytic enzymes in unfertilized eggs of the sea urchin, Arbacia punctulata., Jackson C, Black RE., Biol Bull. February 1, 1967; 132 (1): 1-15.


The mitotic apparatus. Identification of the major soluble component of the glycol-isolated mitotic apparatus., Kane RE., J Cell Biol. February 1, 1967; 32 (2): 243-53.


The mitotic apparatus. Physical chemical characterization of the 22S protein component and its subunits., Stephens RE., J Cell Biol. February 1, 1967; 32 (2): 255-75.


The control of protein synthesis in embryonic development and differentiation., Gross PR., Curr Top Dev Biol. January 1, 1967; 2 1-46.


The ultrastructure of the mucous granules from starfish tube feet., Santos Hde S., J Ultrastruct Res. October 1, 1966; 16 (3): 259-68.


The genetic control of sea urchin development: a chromatographic study of protein synthesis in the Arbacia punctulata embryo., Ellis CH., J Exp Zool. October 1, 1966; 163 (1): 1-21.


The surface reactions associated with fertilization of the sea urchin egg as studied by immunoelectron microscopy., Baxandall J., J Ultrastruct Res. September 1, 1966; 16 (1): 158-80.


The incorporation of 35SO-4 in whole embryos and meridional, animal and vegetal halves of the sea urchin Paracentrotus lividus., Hörstadius S, Immers J, Runnström J., Exp Cell Res. September 1, 1966; 43 (2): 444-50.


The chemical basis of sea urchin embryogenesis., Lovtrup S., Bull Schweiz Akad Med Wiss. September 1, 1966; 22 (1): 201-76.


The nature of messenger RNA in the early stages of sea urchin development., Glisin VR, Glisin MV, Doty P., Proc Natl Acad Sci U S A. July 1, 1966; 56 (1): 285-9.


The gamete-shedding substances of starfishes: a physiological-biochemical study., Chaet AB., Am Zool. May 1, 1966; 6 (2): 263-71.


The carotenoids of the eggs and embryos of the sea urchin Strongylocentrotus purpuratus., Griffiths M., Dev Biol. April 1, 1966; 13 (2): 296-309.


The uptake of valine and cytidine by sea-urchin embryos and its relation to the cell surface., Mitchison JM, Cummins JE., J Cell Sci. March 1, 1966; 1 (1): 35-47.


The endocommensal ciliates of Venezuelan sea urchins., Urdaneta-Morales S, Tengler de McLure M., J Protozool. February 1, 1966; 13 (1): 5-8.


The ribonucleic acid metabolism during the one-cell stage of the sea urchin development., Olsson OA., Comp Biochem Physiol. February 1, 1966; 17 (2): 501-7.


The mechanical properties of the membrane of the sea urchin egg during cleavage., Wolpert L., Exp Cell Res. February 1, 1966; 41 (2): 385-96.


The vitelline membrane and cortical particles in sea urchin eggs and their function in maturation and fertilization., Runnström J., Adv Morphog. January 1, 1966; 5 221-325.


The animalizing action of trypsin on embryos of the sea urchin (Psammechinus miliaris, Paracentrotus lividus). (A study of interactions in early embryonic differentiation)., Runnström J, Immers J., Arch Biol (Liege). January 1, 1966; 77 (3): 365-410.


The chromosomal complement of blastomeres in Arbacia punctulata., German J., Chromosoma. January 1, 1966; 20 (2): 195-201.


The sodium and potassium content in unfertilized and fertilized eggs of the sea urchin., Hori R., Embryologia (Nagoya). October 1, 1965; 9 (1): 34-9.


The mechanism of aggregation of embryonic sea urchin cells; a biochemical approach., Giudice G., Dev Biol. October 1, 1965; 12 (2): 233-47.


The mitotic apparatus. Structural changes after isolation., Kane RE, Forer A., J Cell Biol. June 1, 1965; 25 (3): Suppl:31-9.


THE ANOMALOUS POTASSIUM REQUIREMENT OF AMINO ACID INCORPORATING SYSTEMS FROM SEA URCHIN EGGS., MOLINARO M, HULTIN T., Exp Cell Res. May 1, 1965; 38 398-411.


THE MITOTIC APPARATUS. PHYSICAL-CHEMICAL FACTORS CONTROLLING STABILITY., KANE RE., J Cell Biol. April 1, 1965; 25 SUPPL:137-44.


THE EFFECT OF OXIDIZED LIPOIC ACID ON DEVELOPING ECHINODERM EMBRYOS., WOLFSON N, FRY DS., Exp Cell Res. April 1, 1965; 38 66-74.


THE DISPENSABILITY OF COMPLEMENT FOR ANTIDEVELOPMENTAL ACTION OF ANTISERA AGAINST FERTILIZIN IN SEA URCHIN EGGS., TIMOURIAN H, TYLER A., Proc Soc Exp Biol Med. March 1, 1965; 118 786-9.


The cytochemical reaction for acid phosphatase as applied to sea-urchin eggs studies in whole mounts., Dalcq AM., Arch Biol (Liege). January 1, 1965; 76 (2): 439-56.


The effect of free fatty acids upon the fertilization of the eggs of the sea urchin., Hagström BE, Holman RT., Protoplasma. January 1, 1965; 60 (2): 211-7.


The NASA Biosatellite Program., Jenkins DW., Life Sci Space Res. January 1, 1965; 3 230-40.


TENSION AT THE SURFACE OF SEA-URCHIN EGG: A CRITICAL EXAMINATION OF COLE''S EXPERIMENT., YONEDA M., J Exp Biol. December 1, 1964; 41 893-906.


THE R OLE OF NEUROHUMOURS IN EARLY EMBRYOGENESIS. I. SEROTONIN CONTENT OF DEVELOPING EMBRYOS OF SEA URCHIN AND LOACH., BUZNIKOV GA, CHUDAKOVA IV, ZVEZDINA ND., J Embryol Exp Morphol. December 1, 1964; 12 563-73.


THE ISOLATION AND CHARACTERIZATION OF ASTERS FROM ARTIFICIALLY ACTIVATED SEA URCHIN EGGS., DIRKSEN ER., Exp Cell Res. November 1, 1964; 36 256-69.


THE OSMOTIC ADJUSTMENT IN THE ECHINODERM, STRONGYLOCEROTUS DROEBACHIENSIS., LANGE R., Comp Biochem Physiol. November 1, 1964; 13 205-16.


THE DNA SYNTHETIC PERIOD DURING EARLY DEVELOPMENT OF THE SEA URCHIN EGG., HINEGARDNER RT, RAO B, FELDMAN DE., Exp Cell Res. October 1, 1964; 36 53-61.


THE MITOTIC BEHAVIOR OF CHROMOSOMES IN ECHINODERM EGGS FOLLOWING INCORPORATION OF BROMODEOXYURIDINE., MAZIA D, GONTCHAROFF M., Exp Cell Res. June 1, 1964; 35 14-25.


TRANSAMINASE ACTIVITY IN HOMOGENATES OF DEVELOPING EGGS OF THE SEA URCHIN, LYTECHINUS VARIEGATUS., BLACK RE., Exp Cell Res. February 1, 1964; 33 613-6.


THE HISTOLOGY OF HOLOTHUROIDEAN MUSCLE., FREEMAN WP, SIMON SE., J Cell Comp Physiol. February 1, 1964; 63 25-38.

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