Showing results (31-40 of 52) with videos related to
Sort By:
Pageof 6
The Journal of Experimental Zoology|November 1, 1985
The Limulus sperm motility-initiating peptide initiates acrosome reactions in sea water lacking potassiumD L Clapper, D EpelNature|August 19, 1976
Intracellular pH and activation of sea urchin eggs after fertilisationJ D Johnson, D EpelDevelopmental Biology|December 10, 1999
The roles of changes in NADPH and pH during fertilization and artificial activation of the sea urchin eggB Schomer Miller, D EpelThe Journal of Cell Biology|December 1, 1985
Exocytosis of sea urchin egg cortical vesicles in vitro is retarded by hyperosmotic sucrose: kinetics of fusion monitored by quantitative light-scattering microscopyJ Zimmerberg, C Sardet, D EpelExperimental Cell Research|September 1, 1987
Kinetics of actin assembly attending fertilization or artificial activation of sea urchin eggsL Dufresne, R R Swezey, D EpelDevelopmental Biology|January 1, 1989
The localization of PI and PIP kinase activities in the sea urchin egg and their modulation following fertilizationJ Oberdorf, C Vilar-Rojas, D EpelDevelopmental Biology|January 1, 1983
Changes in internal pH associated with initiation of motility and acrosome reaction of sea urchin spermH C Lee, C Johnson, D EpelThe Journal of Experimental Zoology|July 1, 1976
Fertilization acid of sea urchin eggs is not a consequence of cortical granule exocytosisM Paul, J D Johnson, D EpelDevelopment, Growth & Differentiation|December 29, 1998
Detection of phospholipase Cgamma in sea urchin eggsC De Nadai, K Cailliau, D Epel, et al.Cell|March 1, 1985
The hierarchy of requirements for an elevated intracellular pH during early development of sea urchin embryosF Dubé, T Schmidt, C H Johnson, et al.Pageof 6