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At least 109 records · Page 6Linked to original sources

[Isolation of foot-and mouth disease virus in swine with other diseases].

The authors took a survey of foot-and-mouth disease samples of myocardium and tonsil from swine which was died without clinicals signs of foot-and-mouth disease, with isolation of virus, type O, A and C. It was observed and accentuated relation between the incidence of hog cholera, pneumonia and atipic foot-and-mouth disease, especially from suckling pigs.

Animals↗

[Control of the identity of blood samples for the surveillance of research on swine vesicular disease and Aujeszky's disease].

A surveillance programme for swine vesicular disease (SVD) and Aujeszky disease was set up in 1993 in the Netherlands. Blood samples are taken from pigs by local veterinarians to enable testing for the presence of antibodies against these viruses. A programme to guarantee the identity of pigs tested for these diseases has been in operation since late 1995. In this programme, pigs are identified on the basis of the DNA profiles of blood and hair samples. The hair samples are collected by the department of Animal Health Control. Analysis proves whether blood and hair samples are from the same animal. A total of 655 animals have been tested from 94 farms. In 38.6% of these farms differences were found between blood and hair samples.

Animal Identification Systems↗

Association of environmental air contaminants with disease and productivity in swine.

A cross-sectional epidemiologic study associating air quality with swine health was conducted on 28 swine farms in southern Sweden. Correlation of housing air environment to swine diseases and productivity (data collected over the preceding 12 months) were investigated. The most prevalent swine health problems detected at slaughter were pneumonia and pleuritis. In farrowing and nursery operations, the most prevalent problem was neonatal pig mortality. Several air contaminants (dust, ammonia carbon dioxide, and microbes) were found to be correlated with these swine health problems. Maximal safe concentrations of air contaminants were estimated on the basis of dose-response correlation to swine health or human health problems. Recommended maximal concentrations of contaminant were: dust, 2.4 mg/m3; ammonia, 7 ppm; endotoxin, 0.08 mg/m3; total microbes, 10(5) colony-forming units/m3; and carbon dioxide, 1,540 ppm. The overall quality of the ventilation system was correlated with lower concentration of ammonia, carbon dioxide, microorganisms, and endotoxin, but not with dust concentrations. High animal density was related to high ammonia and air microbe concentrations. Animal density measured as kilograms of swine per cubic meter (compared with kilograms of pig weight or swine per square meter) had the highest correlation to animal health and air contaminants.

Aerosols↗

Swine vesicular disease: attempts to transmit infection to cattle and sheep.

Cattle and sheep were housed with infected pigs for 11 days. Small amounts of virus were recovered intermittently from the pharynx, milk and rectal swabs of the cattle, but no evidence of subclinical infection was found. Some indication of virus growth in the sheep was obtained in that large amounts of virus were recovered from the pharyngeal region 4 to 7 days after exposure and six of the eight sheep developed significant titres of neutralizing antibody which were maintained in four animals for at least 6 weeks.

Animals↗

[Infectious diarrheal diseases in swine: morphologic and microbiologic findings].

Infectious diarrhea in piglets can be caused by TGE, EVD and rota virus. The present report shows another viral agent (para-rota virus) to be present. In addition the report describes light and electronmicroscopic findings of the enteric mucosa caused by the agents mentioned. The degree and distribution of villous atrophy, one of the main histological findings, of infections with TGE, EVD, rota and para-rota virus is compared. A correlation of the results obtained with fluorescent antibody staining and ultrastructural diagnosis of agents was done. An application of the latter seems advisable in case of negative FA staining results.

Animals↗