PubMed HealthSearch

Biomedical subjects

J E Warren

Publications and source records attributed to J E Warren.

16 recordsLinked to original sources

Conception rates in early postpartum ewes bred naturally or by intrauterine insemination.

Ewes were treated with a medroxyprogesterone acetate (MAP) sponge for 8 d followed, at sponge removal, with 500 IU pregnant mare serum gonadotropin (PMSG) at d 30, 40 or 50 (d 0 = lambing) to induce estrus. Dry and lactating ewes were divided into equal numbers at each postpartum day and bred at estrus. Conception rates and number of accessory sperm were determined by flushing the oviducts 3 d after mating and examining the recovered ova. There was no effect (P greater than .05) of lactational status on conception rates. Conception rates increased (P less than .05) from d 30 (10%) to d 40 (45%) and from d 40 to d 50 (80%). There were fewer (P less than .05) ova with accessory sperm (5/26) in d-30 ewes compared with d-40 (10/27) or d-50 (12/24) ewes. In Exp. 2, ewes were assigned to two groups after receiving PMSG on d 30: 1) mated naturally or 2) inseminated during laparotomy near the uterotubal junction (UTJ). Dry and lactating ewes were divided evenly within each of the two treatments. Oviducts were flushed and ova were examined for cleavage. The conception rate was 60% in ewes that were inseminated in the UTJ vs 10% in ewes mated to rams (P less than .05). Lactational status had no effect on results. In conclusion, conception rates in postpartum ewes treated with MAP sponge and PMSG increased from postpartum d 30 to d 50 with natural breeding, and d-30 conception rates were increased over natural mating by insemination into the uterine horn near the UTJ.

Administration, Intravaginal

Lifespan of corpora lutea induced in estrous-synchronized cycling and anestrous ewes.

The effect of pretreatment with flurogestone acetate (FA) on the lifespan of corpora lutea induced with pregnant mare serum gonadotropin (PMS) was examined in cycling and anestrous ewes. Cycling ewes received one of three treatments: 750 IU PMS 2 d before expected estrus (P), FA-impregnated vaginal sponges for 16 d (F), and FA sponges for 16 d and 750 IU PMS 2 d before sponge removal (FP). A fourth group served as controls (C). When compared with d 12 means within treatment, plasma progesterone means were lower (P less than .05) on d 16 in control ewes, on d 15 in P and F ewes, and on d 14 in FP ewes. Only 44% of ewes receiving FA treatment alone exhibited estrus (P less than .05) compared with 100% of untreated ewes. The FP treatment increased ovulation rate compared with controls (P less than .01). The decrease in luteal lifespan observed in cycling ewes suggests a possibility of asynchrony between the uterus and embryo, which could result in failure of an embryo to prevent luteal regression, thus resulting in reduced fertility. None of the seasonally anestrous ewes that received PMS alone and only 55% of those treated with FA sponges for 8 d before PMS injection exhibited estrus. Ewes pretreated with FA exhibited higher plasma progesterone concentrations on d 10 through 16 after PMS injection. There were no differences in luteal lifespan as measured by peripheral plasma progesterone patterns. Although FA treatment did not alter luteal lifespan in anestrous ewes, the increased plasma progesterone concentrations observed with FA treatment suggest that progestogen pretreatment may be essential for optimal luteal function.

Anestrus

Chromosomal evaluation of a ewe lamb with atresia ani vaginalis.

Chromosomes of a ewe lamb born with atresia ani vaginalis were examined after a 72-hour culture of peripheral whole blood. The 2n number of chromosomes was 54,XX, with no apparent deviation from normality. Pedigree analysis of the ewe lamb indicated that her sire and dam were only slightly related (Rsd = 0.59%); therefore, the amount of inbreeding of the lamb was small (Fx = 0.30%).

Animals

Effect of indomethacin on estrogen-induced luteolysis in the ewe.

Three groups of 6 ewes were laparotomized on day 9 of an estrous cycle (estrus = day 0) and the corporà lutea (CL) were marked with India ink. Indwelling cannulae were inserted into the uterine horn adjacent to the CL in groups 2 and 3. Group 1 was injected intramuscularly (i.m.) with corn oil twice daily on day 9. Group 2 received 750 microng 17beta-estradiol (E2) i.m. twice daily on day 9 plus intrauterine injections of indomethacin (INDO) vehicle on days 9 through 13. Group 3 received in the same estrogen treatment plus the injection of 20 mg INDO twice daily on days 9 through 13. Jugular venous samples were taken once daily on days 9 through 14 for progesterone analysis. At re-laparotmy on day 14, the ovaries were examined for new ovulations, and the ovary bearing the marked CL was removed. Results showed that E2 induced premature luteal regression as indicated by decreased CL weights and plasma progesterone levels. INDO when given in conjunction with E2 effectively blocked the luteolytic action of E2. These results suggest that the luteolytic action of E2 is mediated via increased prostaglandin secretion and release from the uterus.

Animals

Crowded dentition.

Explore the source record for details and available documents.

Malocclusion

Antiarrhythmic anesthetic action. II. The effect of methoxyflurane on ventricular automaticity.

During the course of surgical anesthesia, the majority of patients experience some arrhythmias, virtually all of which can be attributed to changes in cardiac pacemaker automaticity and/or alterations in cardiac conduction velocity. Therefore, a better understanding of these mechansims is of importance to anesthesiologists. Cardiac automaticity in the intact heart of dogs under methoxyflurane anesthesia was assessed by measuring changes in ventricular escape time (VET) and ventricular escape rate (VER). A slight shortening of VET was noted, while there was virtually no change from control in VER. Unexpectedly, however, a nonsinus supraventricular escape focus became prominent in many animals at a low anesthetic dose and in all animals at a higher anesthetic concentration. This effect was shown to be preventable by pretreatment with reserpine or a beta-blocking agent. It is concluded that methoxyflurane increases the automaticity of parts of the atrial conducting system, other than the sinus, either by a direct effect or by increasing the sensitivity to prevailing background adrenergic levels.

Anesthesia, Inhalation