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Effects of Pre-Journey Fasting on the Physiological Responses of Young Cattle to 8-hour Road Transport.

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Earley, B., Fisher, A., Farrell, J.A., Murray, M., Nolan, M., Prenderville, D., O'Riordan, E.G., Effects of Pre-Journey Fasting on the Physiological Responses of Young Cattle to 8-hour Road Transport, End of Project Report, Teagasc, 2004.
Abstract
The present study evaluated the effects of fasting animals for 8 hours prior to an 8-hour road journey and their ability to cope with the stress of transport.There was no significant difference in rectal body temperature, pre and post transport and there were no significant differences in liveweight among treatments on days 0 (pre-transport), 1, 4 and 10 (post-transport). Bulls (230kg) undergoing an 8-h transportation at stocking densities of 0.82 m2 /animal showed physiological and haematological responses that were within normal referenced ranges. Animals that were fasted for 8-hours and then transported lost 9.4% bodyweight following the 8-hour journey, while non-fasted and transported animals (NF+T) lost 7.2%. The control animals remaining at grass and non-fasted (NF+G) gained 2%. The animals that were fasted continuously and not transported (F+F) and the non-fasted control animals that were fasted for 8 hours (NF+F) lost 6.1% and 6.2% respectively. There was no significant change in globulin, glucose, urea, haemoglobin, beta-hydroxy butyrate, fibrinogen concentrations, haematocrit and monocyte percentages, monocyte and red blood cell numbers, platelet numbers among treatments prior to or after transport. The % lymphocytes were reduced in the fasted and non-fasted transported animals and post-transport and there was no significant change in lymphocyte numbers. The % of neutrophils and the number of neutrophils were significantly increased in the fasted and non-fasted transported animals. Baseline protein concentrations were significantly lower in the non-fasted and transported and nonfasted then fasted treatments initially. Following transport, protein concentrations were significantly higher in the fasted and transported treatment compared with the non-fasted animals at grass. White blood cell (WBC) numbers were not significantly different prior to transport. Following transport, the WBC numbers were significantly higher in the fasted and transported treatment compared with the non-fasted at grass, fasted and then fasted, and the non-fasted and fasted treatments. Albumin concentrations were significantly higher following transport in the F+T treatment compared with the NF+G, F+F, and NF+F treatments and the NF+T treatment had significantly lower albumin levels than the F+T and NF+F treatments. Haptoglobin concentrations were not significantly different prior to transport. Following transport, haptoglobin concentrations were significantly higher in the F+T compared with the NF+G treatment. Lactate concentrations were significantly higher in the F+T and NF+T compared with the NF+G, F+F, and NF+F treatments following transport. In conclusion, from the physiological and haematological measurements, an 8 hour journey time, even without access to feed for 8 hours prior to transport did not impact negatively on animal welfare.
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