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Scanning Electron Microscopy|January 1, 1983
Fertilization and early development of sea urchinsG Schatten, H SchattenCell Motility and the Cytoskeleton|January 1, 1986
Motility and centrosomal organization during sea urchin and mouse fertilizationH Schatten, G SchattenProceedings of the National Academy of Sciences of the United States of America|August 1, 1991
Maternal inheritance of centrosomes in mammals? Studies on parthenogenesis and polyspermy in miceG Schatten, C Simerly, H SchattenProceedings of the National Academy of Sciences of the United States of America|June 1, 1985
Microtubule configurations during fertilization, mitosis, and early development in the mouse and the requirement for egg microtubule-mediated motility during mammalian fertilizationG Schatten, C Simerly, H SchattenAdvances in Anatomy, Embryology, and Cell Biology|December 16, 2022
Centrosome as Center for Proteolytic Activity and Dysfunctions Associated with Pathogenesis of Human DiseaseHeide SchattenAdvances in Anatomy, Embryology, and Cell Biology|December 16, 2022
Centrosomes in ReproductionHeide SchattenHistochemistry and Cell Biology|April 26, 2008
The mammalian centrosome and its functional significanceHeide SchattenAdvances in Experimental Medicine and Biology|September 20, 2018
Brief Overview of Prostate Cancer Statistics, Grading, Diagnosis and Treatment StrategiesHeide SchattenCell Cycle (Georgetown, Tex.)|February 14, 2023
SQSTM1 facilitates oocyte maturation through inducing ACLY degradation mediated by selective autophagyHeide SchattenEuropean Journal of Cell Biology|April 1, 1982
Effects of griseofulvin on fertilization and early development of sea urchins. Independence of DNA synthesis, chromosome condensation, and cytokinesis cycles from microtubule-mediated eventsH Schatten, G Schatten, C Petzelt, et al.Pageof 138