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Titlebook: Cellular and Molecular Aspects of Implantation; Stanley R. Glasser,David W. Bullock Book 1981 Plenum Press, New York 1981 Plantation.RNA.b

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书目名称Cellular and Molecular Aspects of Implantation
编辑Stanley R. Glasser,David W. Bullock
视频videohttp://file.papertrans.cn/224/223083/223083.mp4
图书封面Titlebook: Cellular and Molecular Aspects of Implantation;  Stanley R. Glasser,David W. Bullock Book 1981 Plenum Press, New York 1981 Plantation.RNA.b
描述Long was I hugg‘d close-long and long. Immense have been the preparations for me, Faithful and friendly the arms that have help‘d me. Cycles ferried my cradle, rowing and rowing like friendly boatmen. For room to me stars kept aside in their own rings, They sent influences to look after what was to hold me. Before I was born out of my mother, generations guided me, My embryo has never been torpid, nothing could overlay it. -Walt Whitman, "Song of Myself" The womb is the seat of all mammalian life. In pregnancy, the uterus acquires this impor­ tance with the arrival of the fertilized egg, which takes up residence for periods ranging from about 2 weeks in the opossum to about 2 years in the elephant. The arrival of the embryo signals a crucial time for the establishment of pregnancy. For several days the blas­ tocyst remains free in the uterine lumen, where it depends on uterine secretions for its sur­ vival and differentiation. During this time, essential changes in the endometrium take place in preparation for attachment of the blastocyst and implantation. Early embryonic loss is an economic problem of global proportions in animal husbandry, where, in pigs and cattle for example, s
出版日期Book 1981
关键词Plantation; RNA; biochemistry; biology; cytoplasm; development; glycoprotein; indomethacin; information; mole
版次1
doihttps://doi.org/10.1007/978-1-4613-3180-3
isbn_softcover978-1-4613-3182-7
isbn_ebook978-1-4613-3180-3
copyrightPlenum Press, New York 1981
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Introductionembryo and modifies her functions to permit its survival. In general, this physiological switch in maternal function is closely correlated with the process of implantation. The mechanisms involved in the establishment of pregnancy, therefore, embrace the preimplantation and implantation periods. A p
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The Generation and Recognition of Positional Information in the Preimplantation Mouse Embryohin the aggregate of cells that form the morula, the more centrally placed cluster of cells starts to differentiate as an inner cell mass (ICM), while the more peripherally placed layer of cells differentiates as trophectoderm. After these first overt signs of differentiation, the two diverging clas
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Relationship between the Programs for Implantation and Trophoblast Differentiationbeing of the fetus. These functions include the attachment of the conceptus to the uterine wall, the acquisition of nutrients from the mother, and the protection of the fetus from immunologic rejection. As trophoblast cells are capable of metabolizing steroids (albeit to varying degrees and beginnin
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Introductionster (1965), and just about the same time has elapsed since analysis of embryonic protein and nucleic acid synthesis was first performed qualitatively by Mintz (1964), and quantitatively by Monesi and Salfi (1967). In the intervening years there have been rapid advances in our ability to apply bioch
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Mobilization of Genetic Information in the Early Rabbit Trophoblastrimental evidence obtained from as great a variety of mammals as possible. Not only have two sharply divergent strategies been evolved for regulating the implantation event—allowing a division between those manmials capable of inducing a reversible growth arrest in the blastocyst and those incapable
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Activity of RNA and DNA Polymerases in Delayed-Implanting Mouse Embryoscharacterized by high rates of metabolic activity and cell division as they prepare to implant. Alternatively, in pregnancies complicated by concurrent lactation or castration, the embryos have decreased levels of metabolic activity; cell division slows and finally stops altogether and development s
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