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Overview of Biological Vitrification. Vitrification of Oocytes and Embryos: Finally a Recognized Technique, But Still a Source of Concern and Debate. Intracellular Concentration of Cryoprotectant During Vitrification and Slow-Freezing Cryopreservation Procedures? Importance of Cooling Versus Warming Rates in Vitrification Techniques. The Movement of Water and Cryoprotectants in Mammalian Oocytes and Embryos: Membrane Permeability and Aquaporins. Open Versus Closed Systems. Automatic Vitrification: Development of the Gavi System. Vitrification at Minimum Volume: From Basic Science to Clinical Application. Vitrification of Oocytes: General Considerations and the Use of the Cryotec Method. Safety of Vitrification and Cryostorage and Optimization of Cryopreservation Protocols. Physiological Aspects of Oocyte Vitrification. Vitrification of Oocytes: Imprinting and Disturbance in Spindle Formation and Chromosome Segregation. Metabolic Profile of Day 3 Embryos Arising from Vitrified Oocytes. Vitrification of Human Oocytes for In Vitro Fertilization Patients. Oocyte Vitrification: Donor "Egg Banking." Fertility Preservation for oncology Patients. Vitrification of Human Ovarian Tissue. Vitrification of Cleavage-Stage Embryos and Blastocysts and Their Neonatal Outcomes. Vitrification of Human Blastocysts: Clinical Realities and Neonatal Outcomes. Development and Hatching of Human Blastocysts After Vitrification and Warming. Does Storage of Vitrified Blastocysts Have an Impact on Implantation Potential and Birth Rate? Ovarian Tissue Vitrification: Clinical Realities and Outcomes Chapter for From Basic Science to Clinical Application. Vitrification of Human Testicular Tissue, Spermatogonia, and Spermatozoa. Vitrification in Pluripotent Stem Cell Banking: Requirements and Technical Solutions For Large-Scale Biobanks. Scrying The Future: The ongoing Transformation of Reproductive Medicine Through Vitrification. |