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uterine inertia/progesterone

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This study aimed to examine the etiology of canine dystocia by measuring the relative expression of oxytocin receptor (OXTR) mRNA and the concentration of serum progesterone, plasma PGF metabolite (PGFM), and blood ionized calcium (iCa) near term and in dystocia. Altogether 58 bitches

Hormonal concentrations in bitches with primary uterine inertia.

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Normal labor is accompanied by sequential changes in blood concentrations of prostaglandin F2alpha (measured as 15-ketodihydro-PGF2 alpha=PGFM), progesterone, estradiol, oxytocin, vasopressin, and of elevated cortisol levels. The aim of this study was to investigate hormone concentrations in dogs

Primary uterine inertia in four labrador bitches.

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Uterine inertia is a common cause of dystocia in the bitch and is designated as primary (i.e., uterine contractions fail to ever be initiated) or secondary (i.e., uterine contractions cease after a period of time but before labor is completed). The etiology of primary uterine inertia is not well
OBJECTIVE To evaluate the relationship between serum and amniotic fluid (AF) estradiol (E2), estriol (E3), progesterone (Po), cortisol (Co), human placental lactogen (hPL) concentrations and uterine contractions. To observe the ultrastructural changes of uterine myometrium before and during

[Pregnancies and deliveries in patients with Charcot-Marie-Tooth disease].

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Hereditary motor sensory neuropathy (HMSN), also known as Charcot-Marie-Tooth (CMT) disease, is a spectrum of disorders caused by a specific mutation in one of several myelin genes, which results in defects in myelin structure, maintenance and formation. Affected individuals show progressive distal

Physiological aspects of pregnancy and parturition in dogs.

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During late pregnancy (greater than 50 days) the pattern of uterine electrical activity is characterized by episodes of activity lasting 3-10 min and recurring at a low frequency (maximum 2.5/h). During the last 7 days before delivery there is a progressive qualitative change in activity which is

Uterine and placental expression of canine oxytocin receptor during pregnancy and normal and induced parturition.

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Oxytocin (OT) plays an important role as an inducer of uterine contractility, acting together with its receptor (OTR) to increase synthesis of prostaglandins. Although OT is commonly used in the treatment for dystocia and uterine inertia in the bitch, little attention has been paid to the role of OT
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