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Fundamentals of human embryonic growth in vitro and the selection of high-quality embryos for transfer.

作者信息

Boiso Irene, Veiga Anna, Edwards Robert G

机构信息

Reproductive Medicine Service, Department of Obstetrics and Gynaecology, Institut Universitari Dexeus, Paseo Bonanova 89-91, Barcelona, 08017, Spain.

出版信息

Reprod Biomed Online. 2002 Nov-Dec;5(3):328-50. doi: 10.1016/s1472-6483(10)61841-x.

DOI:10.1016/s1472-6483(10)61841-x
PMID:12470535
Abstract

Knowledge of the nature of embryo growth, and the handling and scoring of quality in human embryos are significant aspects for embryologists in IVF clinics. This review describes the formation, growth and maturation of human oocytes, many aspects of fertilization in vitro, embryonic transcription during preimplantation stages, and the formation of polarities, timing controls, role of mitochondria and functions of endocrine and paracrine systems. Modern concepts are fully discussed, together with their significance in the practice of IVF. This knowledge is essential for the correct clinical care of human embryos growing in vitro, especially in view of their uncharacteristic tendency to vary widely in implantation potential. Underlying causes of such variation have not been identified. Stringent tests must be enforced to ensure human embryos develop under optimal conditions, and are scored for quality using the most advanced techniques. Optimal methods of culture are described, including methods such as co-culture introduced to improve embryo quality but less important today. Detailed attention is given to quality as assessed from embryonic characteristics determined by timers, polarities, disturbed embryo growth and anomalous cell cycles. Methods for classification are described. Approaches to single embryo transfers are described, including the use of sequential media to produce high-quality blastocysts. These approaches, and others involved in surgical methods to remove fragments, transfer ooplasm or utilize newer approaches such as preimplantation diagnosis of chromosomal complements in embryos are covered. New outlooks in this field are summarized.

摘要

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