There is increased industry focus on optimised welfare, productivity and antibiotic usage in cattle youngstock, however, little is known about UK farmers' attitudes and practices in rearing calves. In this cross-sectional study, 479 farmers were surveyed online about their cattle youngstock rearing approach and outcomes. Represented were 174 dairy farmers, 255 beef suckler farmers and 50 calf rearers. Farmers showed awareness of good youngstock rearing practices such as colostrum management and housing facilities. Morbidity and mortality from diarrhoea (82%, 48%) and bovine respiratory disease (BRD) (68%, 48%) were high on farms surveyed but farmers did not frequently consult their veterinary surgeon regarding these diseases. Farmers surveyed were not always aware of the efficacy of preventative methods such as vaccination, and frequently used antibiotic treatments (27% for diarrhoea and 40% for BRD) but not diagnostics when animals had disease. Veterinary surgeons could use these insights to better understand farmers' motivations and priorities, to make communication more efficient and align goals.
Background Mannheimia haemolytica is commonly associated with respiratory disease in cattle worldwide as a cause of fibrinous pneumonia, bronchopneumonia and pleuritis. M. haemolytica is further subdivided into 12 serovars, however not all are considered to be pathogenic in cattle. The study aim was to determine the most common serovars of M. haemolytica associated with respiratory disease in cattle in Great Britain, which is currently unknown and could be useful information for clinicians when considering preventative strategies. Results One hundred four M. haemolytica isolates isolated from bovine clinical pathology and post-mortem samples from pneumonia cases between 2016 and 2018 were tested using a multiplex PCR assay to identify M. haemolytica serovars A1, A2 and A6. 46 isolates (44.2%) typed as M. haemolytica serovar A1, 31 (29.8%) as M. haemolytica serovar A2 and 18 isolates (17.3%) as M. haemolytica serovar A6. Nine isolates (8.7%) were not A1, A2 or A6 so were considered to belong to other serovars or were not typable. Conclusion This study highlights the importance of M. haemolytica serovars other than A1 which may be responsible for respiratory disease in cattle and could help guide the veterinarian when making choices on preventative vaccination programmes.
An online survey was sent to 248 dairy farms from all four UK nations. The results identified areas to optimise calf health and welfare, with a particular focus on extended colostrum feeding (beyond the first 24 hours of life). Chi squared analysis, Cochran Armitage trend tests and logistic regression were used to investigate biologically plausible associations between variables. Thematic analysis was used to construct and refine thematic maps. There was a significant linear trend between the frequency of blood sampling of calves to monitor serum IgG concentrations and testing of colostrum for IgG concentration (P<0.01). A number of farms (41.53%) pooled colostrum (without pasteurising), which may reduce overall IgG concentration and increase disease transmission risk. Timing of colostrum harvest (within 6 hours of calving) was suboptimal on some (23.39%) farms. Many of the perceived barriers to extended colostrum feeding were human and physical, including tangible commodities such as storage and facilities, labour and procedural issues.
Background Bovine respiratory disease (BRD) is common in cattle youngstock on UK dairy farms. The current diagnostic methods lack sensitivity and specificity. Thoracic ultrasound (TUS) is a relatively new BRD diagnostic tool with increased accuracy. Method Data were collected from TUS examinations of 347 calves on Scottish dairy farms and compared to farmer BRD treatment rates. A calf health scoring tool was used to collect information on youngstock health and management on these farms. Results Of 347 ultrasonographic examinations, 53 (15.3%) were classified as abnormal and 294 (84.7%) as normal. Of the 53 calves classified as abnormal, only 13 (24.5%) were treated by the farmer; however, of the 294 classified as normal, 22 (7.5%) were treated. Conclusion The results indicated farmers were misdiagnosing BRD in youngstock. Use of TUS on UK farms may improve diagnostic rates and accuracy, reduce the unnecessary use of antimicrobials and demonstrate the value of preventive healthcare programmes.
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