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Science (New York, N.Y.)|February 16, 1973
Sea urchin sperm-egg interactions studied with the scanning electron microscopeM J Tegner, D EpelProceedings of the National Academy of Sciences of the United States of America|May 1, 1974
Activation of sea-urchin eggs by a calcium ionophoreR A Steinhardt, D EpelThe Journal of Experimental Zoology|June 1, 1983
Heavy metal chelators prolong motility and viability of sea urchin sperm by inhibiting spontaneous acrosome reactionsC H Johnson, D EpelScience (New York, N.Y.)|July 11, 1975
Polyspermy block of Spisula eggs is prevented by cytochalasin BC A Ziomek, D EpelThe Journal of Cell Biology|May 1, 1981
Intracellular pH of sea urchin eggs measured by the dimethyloxazolidinedione (DMO) methodC H Johnson, D EpelZygote (Cambridge, England)|May 1, 1995
Beakers versus breakers: how fertilisation in the laboratory differs from fertilisation in natureK S Mead, D EpelExperimental Cell Research|August 1, 1992
The use of caged substrates to assess the activity of 6-phosphogluconate dehydrogenase in living sea urchin eggsR R Swezey, D EpelProceedings of the National Academy of Sciences of the United States of America|February 1, 1988
Enzyme stimulation upon fertilization is revealed in electrically permeabilized sea urchin eggsR R Swezey, D EpelCell Regulation|November 1, 1989
Stable, resealable pores formed in sea urchin eggs by electric discharge (electroporation) permit substrate loading for assay of enzymes in vivoR R Swezey, D EpelThe Journal of Experimental Zoology|July 1, 1976
Scanning electron microscope studies of sea urchin fertilization. I. Eggs with vitelline layersM J Tegner, D EpelPageof 19