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Molecular Mechanisms Determining Mammalian Oocyte Quality Ahmed Z Balboula

  • SKU: BELL-58549694
Molecular Mechanisms Determining Mammalian Oocyte Quality Ahmed Z Balboula
$ 31.00 $ 45.00 (-31%)

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Molecular Mechanisms Determining Mammalian Oocyte Quality Ahmed Z Balboula instant download after payment.

Publisher: Springer
File Extension: PDF
File size: 6.8 MB
Pages: 136
Author: Ahmed Z. Balboula
ISBN: 9783031551628, 3031551621
Language: English
Year: 2024

Product desciption

Molecular Mechanisms Determining Mammalian Oocyte Quality Ahmed Z Balboula by Ahmed Z. Balboula 9783031551628, 3031551621 instant download after payment.

As the age of childbearing increases, reduced female gamete (egg) quality has emerged as the primaery cause of infertility in women. This book addresses molecular mechanisms that regulate oocyte quality as well as intrinsic and extrinsic factors that compromise these mechanisms. Eggs are produced through a unique cell division called meiosis. Oocyte meiosis is initiated early in fetal life. Shortly before birth, the oocyte undergoes a prolonged arrest at prophase I until the age of puberty, at which selected oocytes resume meiosis I. Following meiotic resumption and during oocyte maturation, tight regulation of nuclear and DNA-related mechanisms ensures proper homologous chromosome segregation prior to another arrest at metaphase II. Any errors prior to completion of meiosis I can lead to chromosome segregation errors and aneuploidy, the most common genetic cause of miscarriage and congenital disorders such as Down syndrome. In addition to nuclear maturation, several cytoplasmic processes are orchestrated to support cell division and to generate developmentally competent eggs capable of supporting fertilization and early embryonic development. The interaction between these nuclear and cytoplasmic processes is critical for producing good-quality oocytes. This volume in the Advances in Anatomy, Embryology and Cell Biology book series presents current reviews by leading experts. It offers valuable insights for researchers, physicians and Ph.D. students interested in reproductive biology, particularly oocyte quality and meiosis.

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