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Rate of protein synthesis: regulation during first division cycle of sea urchin eggs., Sofer WH, George JF, Iverson RM., Science. September 30, 1966; 153 (3744): 1644-5.


Respiration during cell division in the egg of the sea urchin psammechinus miliaris., ZEUTHEN E., Biol Bull. April 1, 1950; 98 (2): 144-51.


Regulatory mechanisms of cellular respiration; the role of soluble sulfhydryl groups as shown by the effect of sulfhydryl reagents on the respiration of sea urchin sperm., BARRON ES, NELSON L, ARDAO MI., J Gen Physiol. November 1, 1948; 32 (2): 179-90.


Respiratory levels in mature sea-urchin eggs., GONSE PH., J Embryol Exp Morphol. June 1, 1960; 8 73-93.


RIBONUCLEIC ACID METABOLISM IN UNFERTILIZED AND FERTILIZED SEA-URCHIN EGGS., BRACHET J, DECROLY M, FICQ A, QUERTIER J., Biochim Biophys Acta. August 20, 1963; 72 660-2.


RNA and protein synthesis in developing sea urchin eggs. NASA CR-673., Gross PR., NASA Contract Rep NASA CR. February 1, 1967; 1-16.


Respiration and cell-division in eggs of the sea urchin, Psammechinus miliaris., ZEUTHEN E., Nature. October 25, 1947; 160 (4069): 577.


REGIONAL DIFFERENCES OF MITOCHONDRIAL SIZE IN THE SEA URCHIN EMBRYO., BERG WE, LONG ND., Exp Cell Res. February 1, 1964; 33 422-37.


Rates of protein synthesis in whole and half embryos of the sea urchin., Berg WE., Exp Cell Res. December 1, 1965; 40 (3): 469-89.


Rhythmic respiration in the sea urchin., TANG P., Nature. July 31, 1948; 162 (4109): 189.


Regeneration of spines by sea urchins of the genus Strongylocentrotus., SWAN EF., Growth. March 1, 1952; 16 (1): 27-35.


RECOVERY FROM DIVISION DELAY IN IRRADIATED GAMETES OF ARBACIA PUNCTULATA., FAILLA PM., Radiat Res. June 1, 1965; 25 331-40.


RIBONUCLEIC ACID SYNTHESIS DURING SEA URCHIN EMBRYOGENESIS., WILT FH., Dev Biol. June 1, 1964; 9 299-313.


REPRODUCTIVE AND BIOCHEMICAL STUDIES ON A SEA URCHIN, STOMOPNEUSTES VARIOLARIS, FROM MADRAS HARBOR., GIESE AC, KRISHNASWAMY S, VASU BS, LAWRENCE J., Comp Biochem Physiol. December 1, 1964; 13 367-80.


Respiration during the reproductive cycle in the sea urchin, Strongylocentrotus purpuratus., Giese AC, Farmanfarmaian A, Hilden S, Doezema P., Biol Bull. April 1, 1966; 130 (2): 192-201.


Ribosomal ribonucleic acid of the sea urchin egg and its fate during embryogenesis., Nemer M, Infante AA., J Mol Biol. July 14, 1967; 27 (1): 73-86.


Response of unfertilized sea urchin eggs to antiserum., PERLMANN P., Exp Cell Res. April 1, 1956; 10 (2): 324-53.


Release of respiratory control by 2,4-dinitrophenol in different stages of sea urchin development., IMMERS J, RUNNSTROM J., Dev Biol. February 1, 1960; 2 90-104.


Recovery from ultra-violet light-induced delay in cleavage of Arbacia eggs by irradiation with visible light., MARSHAK A., Biol Bull. December 1, 1949; 97 (3): 315-22.


RIBONUCLEIC ACID METABOLISM FOLLOWING FERTILIZATION IN SEA URCHIN EGGS., GLISIN VR, GLISIN MV., Proc Natl Acad Sci U S A. December 1, 1964; 52 1548-53.


Retardation of Arbacia egg cleavage by dinoflagellate-contaminated sea water (red tide)., CORNMAN I., Biol Bull. October 1, 1947; 93 (2): 205.


Radiation-induced mitotic delay in sea urchin eggs treated with puromycin and actinomycin D., Rustad RC, Burchill BR., Radiat Res. October 1, 1966; 29 (2): 203-10.


Regional differences in isotopic labelling of nucleic acid and protein in early sea urchin development. An autoradiographic study., MARKMAN B., Exp Cell Res. February 1, 1961; 23 118-29.


RADIOAUTOGRAPHIC EVIDENCE FOR THE INCORPORATION OF LEUCINE-CARBON-14 INTO THE MITOTIC APPARATUS., STAFFORD DW, IVERSON RM., Science. February 7, 1964; 143 (3606): 580-1.


REGULATION OF PROTEIN SYNTHESIS IN THE EMBRYOGENESIS OF THE SEA URCHIN., NEMER M., Natl Cancer Inst Monogr. April 1, 1964; 13 141-54.


Regeneration of cilia in the sea urchin embryo., Iwaikawa Y., Embryologia (Nagoya). March 1, 1967; 9 (4): 287-94.


Refertilization of partially fertilized sea urchin eggs., HAGSTROM BE, RUNNSTROM J., Exp Cell Res. February 1, 1959; 16 (2): 309-14.


RNA-and protein-synthesizing capacity of isolated oocytes of the sea urchin Lytechinus pictus., Piatigorsky J, Ozaki H, Tyler A., Dev Biol. January 1, 1967; 15 (1): 1-22.


Removal of the Fertilization Membranes From Large Quantities of Sea-Urchin Eggs., Lindahl PE, Lundin J., Science. October 29, 1948; 108 (2809): 481-2.


Research on the animalization of the sea-urchin egg by zinc ions, LALLIER R., J Embryol Exp Morphol. December 1, 1959; 7 540-8.


Restitution of whole larvae from disaggregated cells of sea urchin embryos., GIUDICE G., Dev Biol. December 1, 1962; 5 402-11.


RATES OF OXYGEN CONSUMPTION OF FERTILIZED AND UNFERTILIZED ASTERIAS, ARBACIA, AND SPISULA EGGS., HORWITZ BA., Exp Cell Res. June 1, 1965; 38 620-5.


RELEASE OF ACID POLYSACCHARIDES FOLLOWING FERTILIZATION OF SEA URCHIN EGGS. A CHEMICAL STUDY OF CHANGES IN THE CELL SURFACE., ISHIHARA K., Exp Cell Res. November 1, 1964; 36 354-67.


Respiration of the tissues of some invertebrates and its inhibition by cyanide., ROBBIE WA., J Gen Physiol. July 1, 1949; 32 (6): 655-70.


Re-fertilization of the sea urchin egg., HAGSTROM B, HAGSTROM BRITT., Exp Cell Res. May 1, 1954; 6 (2): 491-6.


RNA and yolk synthesis in growing oocytes of the sea urchin, Lytechinus verigatus., COWDEN RR., Exp Cell Res. December 1, 1962; 28 600-4.


Reduction of blue tetrazolium in developing sea urchin eggs after addition of various substrates and phosphopyridine nucleotides., BACKSTROM S., Exp Cell Res. October 1, 1959; 18 357-63.


Recovery from Radiation-Induced Delay of Cleavage in Gametes of Arbacia punctulata., Failla PM., Science. December 21, 1962; 138 (3547): 1341-2.


Role of a trypsin-like protease in "informosomes" in a trigger mechanism of activation of protein synthesis by fertilization in sea urchin eggs., Mano Y., Biochem Biophys Res Commun. October 20, 1966; 25 (2): 216-21.


RIBONUCLEIC ACIDS IN THE EARLY EMBRYONIC DEVELOPMENT OF THE SEA URCHIN. I. QUANTITATIVE VARIATIONS AND 32-P ORTHOPHOSPHATE INCORPORATION STUDIES OF THE RNA OF SUBCELLULAR FRACTIONS., TOCCO G, ORENGO A, SCARANO E., Exp Cell Res. June 1, 1963; 31 52-60.


Role of the terminal pigment spots of the starfish, Asterias forbesi, in light orientation., ROCKSTEIN M., Nature. February 18, 1956; 177 (4503): 341-2.


Relative deficiency of intracellular relaxing system observed in presumptive furrowing region in induced cleavage in the centrifuged sea urchin egg., Kinoshita S., Exp Cell Res. January 1, 1968; 51 (2-3): 395-405.


Regulation of germinal vesicle breakdown in starfish oocytes., Schuetz AW, Biggers JD., Exp Cell Res. June 1, 1967; 46 (3): 624-8.


Release of maternal RNA from some particles as a mechanism of activation of protein synthesis fertilization in sea urchin eggs., Mano Y, Nagano H., Biochem Biophys Res Commun. October 20, 1966; 25 (2): 210-5.


Respiration of oocytes, unfertilized eggs and fertilized eggs from Psammechinus and Asterias., BOREI H., Biol Bull. August 1, 1948; 95 (1): 124-50.


Radiation-induced effects on DNA synthesis in developing sea urchin eggs., Zeitz L, Ferguson R, Garfinkel E., Radiat Res. April 1, 1968; 34 (1): 200-8.


Respiration and fertilizing capacity of sea urchin sperm in presence of serum albumin and jelly coat solution., VASSEUR E, WICKLUND E, RUNNSTROM J., Biol Bull. October 1, 1950; 99 (2): 324-5.


Radioactive labeling of RNAs of sea urchin eggs during oogenesis., Piatigorsky J, Tyler A., Biol Bull. August 1, 1967; 133 (1): 229-44.


Refractometry of the nucleolus of Asterias eggs after treatment with ribonuclease., DUBAS S., Acta Anat (Basel). January 1, 1961; 46 156-62.


Retardation of cleavage in sea urchin eggs by cell extracts., WOLFSON N., Exp Cell Res. November 1, 1959; 18 504-11.

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