COPULATORY PLUG DOES NOT INDUCE LUTEAL ACTIVITY IN THE MOUSE MUS MUSCULUS

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Copulatory plug does not induce luteal activity in the mouse Mus musculus.

In the normal oestrous cycle of the female house mouse, a true luteal phase is absent. Some unknown stimulus provided by the male during mating induces the luteal phase of the oestrous cycle in the female. Land & McGill (1967) initiated a search for this stimulus. They recognized three possible sources of stimulation from the male that might be either sufficient or necessary for the induction o...

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Gastrulation in Mus musculus (common house mouse)

As mice embryos develop, they undergo a stage of development called gastrulation [7]. The hallmark of vertebrate gastrulation [7] is the reorganization of the inner cell mass [8] (ICM) into the three germ layers [9]: ectoderm [10], mesoderm [11], and endoderm [12]. Mammalian embryogenesis [13] occurs within organisms; therefore, gastrulation [7] was originally described in species with easily o...

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Gastrulation in Mus musculus (common house mouse)

As mice embryos develop, they undergo a stage of development called gastrulation [7]. The hallmark of vertebrate gastrulation [7] is the reorganization of the inner cell mass [8] (ICM) into the three germ layers [9]: ectoderm [10], mesoderm [11], and endoderm [12]. Mammalian embryogenesis [13] occurs within organisms; therefore, gastrulation [7] was originally described in species with easily o...

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Gastrulation in Mus musculus (common house mouse)

As mice embryos develop, they undergo a stage of development called gastrulation [7]. The hallmark of vertebrate gastrulation [7] is the reorganization of the inner cell mass [8] (ICM) into the three germ layers [9]: ectoderm [10], mesoderm [11], and endoderm [12]. Mammalian embryogenesis [13] occurs within organisms; therefore, gastrulation [7] was originally described in species with easily o...

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Electrophoretic variants in erythrocytes of the house mouse, Mus musculus

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ژورنال

عنوان ژورنال: Reproduction

سال: 1968

ISSN: 1470-1626,1741-7899

DOI: 10.1530/jrf.0.0150149