The significant decrease in fertility observed in dairy cattle during the last few decades and increasing requirements by the farmers have made a regular control of reproduction indispensable to urgently identify and solve potential problems affecting reproductive efficiency. Traditionally, the main diagnostic methods used for reproductive control in cattle included rectal palpation, inspection of vaginal discharge and vaginoscopy. Since the 1990 s, the use of ultrasound (US) has become a common diagnostic method as a result of the new advances made in the development of US scans: smaller size, high level of autonomy, high image quality and accessible prices. Ultrasound improves accuracy in the diagnoses of stages of the oestrous cycle, ovarian and uterine pathologies, and pregnancy diagnosis. In addition, it facilitates the diagnosis of alterations during pregnancy (embryo mortality, foetal malformations, etc.) and helps determining foetal sex from day 55 of pregnancy.
Since the approval by the European Medicines Agency in 2013 of a monensin controlled-release capsule (CRC) for the prevention of ketosis in dairy cows, there has been widespread use across Europe. In recent decades, several papers have investigated the effects of monensin used as a CRC or as a feed additive to improve cattle energy metabolism and improve feed efficiency. Since the CRC is the only form of monensin permitted in Europe in dairy cows, the objective of this review was to report and summarize observations from the literature on the effects of this treatment in transition cows. The peer-reviewed literature published from 1997 was scanned, and papers written in English were evaluated for eligibility. Only papers evaluating the use of monensin in dairy cows for the prevention of ketosis during the transition period were reviewed. In total, 42 papers met the required criteria and were included in this review. The major findings focused on cow metabolism and health, rumen fermentation and milk production and quality. Overall, the review of the existing literature confirmed that monensin delivered as a CRC during the transition period has effects of different magnitude compared to other forms, doses or durations of administration. Studies agree on the antiketotic effects of this treatment, showing evidence of an increased propionate production in the rumen, reduced blood β-hydroxybutyrate, and improved liver function in treated cows, mainly resulting in reduced incidence of peripartum disease. On the contrary, the effects of CRC on ammonia production and rumen microflora are less robust than those reported for other forms. Of importance for the European market is the well-documented absence of any negative impact on milk and cheese production and composition using the CRC treatment.
ABSTRACT:One of the main drawbacks of using endometrial cytology in cows is the time required for sample collection and interpretation. It is recommended to count a large number of polymorphonuclear neutrophils (PMN) and to calculate their overall percentage. However, since counting a large number of cells is a laborious method, it would be preferable to simplify the analysis by counting the number of PMN in few microscopic fields. Therefore, the aim of this study was to assess whether a simple test, based on calculating the average number of PMN in 10 fields at 1000×, could be a reliable technique for the diagnosis of endometritis. Two hundred and sixty endometrial samples were taken from Holstein cows at different postpartum stages using an adapted cytobrush. Smears obtained were air-dried for fixing and stained with a Romanowsky-type procedure. To evaluate the counting method, the percentage of PMN in 150 cells was calculated as well as the average number of PMN in 10 fields at 1000×. Receiver operating characteristic (ROC) curves was constructed to evaluate both methods, the percentage of PMN (used as reference) and the average number of PMN. It was observed that the area under the curve is (regardless of cut-off used) higher than 0.99 and the correspondence between both methods were 1.58 PMN/field for the cut-off value of 15% and 2.40 PMN/field for the cut-off value of 20%. These results show that this simple method could be used to determine the percentage of PMN in endometrial cytological samples and to diagnose endometritis in cows.
Experiments were carried out to evaluate the effect of incubation time on nuclear maturation (Experiment 1) and determine the cleavage rate of alpaca oocytes after of IVF time (Experiment 2) In Experiment 1, CCOs were collected from slaughterhouse ovaries and transported to the laboratory in a thermos flask containing a saline solution 0.9% with antibiotic antimycotic at 35°C. CCOs were aspirated from follicles >2 mm and pooled in a conical tube to sedimentation previous to evaluation under stereomicroscope and CCOs with a cytoplasm homogeneous and 2 or more layers of cumulus cells were transferred to plates with a 40-μL drop of maturation medium TCM-199 supplemented with 10% FCS (v : v) plus 0.5 μg mL-1 FSH, 10 μg mL-1 hCG, 0.2 mM sodium pyruvate, 50 μg mL-1 gentamicine, and 1 μg mL-1 Estradiol under mineral oil with 10-12 oocytes/drop. Oocytes were incubated under the following maturation times: 30, 34, and 38 h at 39°C in an atmosphere of 5% CO2 and high humidity. After each maturation time, CCOs were removed from maturation medium and washed with PBS supplemented with 10% FCS and 1 mgmL-1 of hyaluronidase and fixed in ethanol: acetic acid (3 : 1). Oocytes were placed on the slide with minimum medium and stained with 1% orcein for 5 min The slides were examined under a phase contrast microscope at × 400 to evaluate status of nuclear maturation and classified as germinal vesicle (GV); metaphase I (M-I), anaphase-telophase; metaphase II (M-II) and degenerated. Experiment 2: The same maturation method as Experiment 1 was used. Testes were collected of mature males from slaughterhouse and transported to the laboratory. Caudal epididymide was isolated. A prick was made on the convoluted tubules with a sterile hypodermic needle and the fluid, rich in spermatozoa, was aspirated in syringes containing 2 mL of Tris-fructose egg yolk extender. Motile spermatozoa were obtained by centrifugation: 700 g on a Percoll discontinuous gradient (22.5 :45.0%) for 25 min. The supernatant was removed by aspiration and pellet (containing viable spermatozoa) was resuspended in TL stock. Spermatozoa and oocytes were co-incubated for 18-20 h at 39°C with 5% CO2 and then cultivated in TCM-199 supplemented with 10% FCS (v: v), 0.2 mM sodium pyruvate, and 50 μg mL-1 gentamicine and evaluated at 48 h. Data were subjected to ANOVA. For Experiment 1, the proportions of oocytes reaching M-II stage was 18.9 ± 15.7, 42.9 ± 16.2, and 65.8 ± 8.1% for the 30, 34, and 38 h of culture, respectively, with difference to maturation time (P < 0.05). For Experiment 2, the cleavage rate was 9.5, 7.7, and 15.4% to 30, 34, and 38 h after of fertilization time 48 h culture. These results indicate that 38 or more h is required for the maturation and fertilization of alpaca oocytes. Grant 064 FINCyT-PIBAP 2008.
A systematic review was conducted to assess the cost of ketosis in dairy cattle, and to elucidate how ketosis cost is estimated in each of the studies. Scientific papers addressing the economic impact of ketosis in dairy cows were identified through a search in 4 databases (Medline, ISI Web of Science, CAB Abstracts, and Agricola). The literature search was conducted with no restrictions on the date of study publication, publication type, or language. The methodological quality of the studies was assessed regarding study design, data collection, and analysis and interpretation of the study results. Of 531 identified records, 10 were selected, of which 9 were published from 2015 onward. Of the 10 studies reviewed, 9 report cost of a case of ketosis, and the estimates vary widely, with values ranging from €19 to €812. Two studies report ketosis cost at a farm level (€3.6-€29/ cow per year). Among the studies, we observed great variation not only in the estimation models and inputs used (costs and losses associated with the disease) but also in the definition of ketosis and its prevalence or incidence figures. Moreover, the cost of ketosis was estimated for dairy farms in the
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