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隧道通风作为炎热气候下奶牛舍的有效性:热应激期间的直肠温度及产奶量的季节性变化

Effectiveness of tunnel ventilation as dairy cow housing in hot climates: rectal temperatures during heat stress and seasonal variation in milk yield.

作者信息

Dikmen Serdal, Larson Colleen C, De Vries Albert, Hansen Peter J

机构信息

Department of Animal Science, Faculty of Veterinary Medicine, Bursa Uludağ University, 16059, Bursa, Turkey.

Department of Animal Sciences, University of Florida, PO Box 110910, Gainesville, FL, 32611-0910, USA.

出版信息

Trop Anim Health Prod. 2020 Sep;52(5):2687-2693. doi: 10.1007/s11250-020-02309-3. Epub 2020 May 30.

Abstract

Tunnel ventilation is an increasingly popular approach to mitigate the effects of heat stress on dairy cattle. Tunnel-ventilation barns use a bank of high-power fans to move air horizontally from one end of the barn to the other at cow level. The overall objective of the present experiments was to determine whether tunnel ventilation is superior to housing with fans and sprinklers with respect to rectal temperature during heat stress and seasonal variation in milk yield. In the first study, rectal temperatures were measured for 1097 lactating Holstein cows in six freestall barns with fans and sprinklers and 575 lactating Holsteins in four tunnel-ventilated freestall barns at a time point between 14:00 and 16:00 h during the months of June to August in Florida, USA. Rectal temperatures were lower for cows in tunnel-ventilation barns than sprinkler-and-fan barns when the tunnel-ventilation barns were built de novo but not when the tunnel-ventilation barns were produced by retrofitting a sprinkler-and-fan barn (interaction, P = 0.0129). In the second study, average daily milk yield in the first 90 days in milk was examined for 8470 lactating Holsteins housed in three sprinkler-and-fan barns and two tunnel-ventilation barns. Milk production for cows calving in cool weather (October to March) was greater (P < 0.0001) than for cows calving in hot weather (April to September). The seasonal reduction in milk yield was less for cows (P = 0.037) in tunnel-ventilation barns (3.5% decrease) than for cows in sprinkler-and-fan barns (5.8% decrease). With this difference in impact of heat stress, it was estimated at a dairy farm could invest up to a $332 more per cow space in a tunnel-ventilated barn than in a sprinkler-and-fan barn. It was concluded that housing cows in tunnel-ventilation barns can reduce the impact of heat stress on body temperature regulation and milk yield.

摘要

隧道通风是一种越来越流行的减轻热应激对奶牛影响的方法。隧道通风牛舍使用一排大功率风扇,在奶牛高度将空气从牛舍一端水平输送到另一端。本实验的总体目标是确定在热应激期间直肠温度以及产奶量的季节性变化方面,隧道通风是否优于装有风扇和喷头的牛舍。在第一项研究中,于美国佛罗里达州6月至8月期间的14:00至16:00这一时间段,对六个装有风扇和喷头的散栏牛舍中的1097头泌乳荷斯坦奶牛以及四个隧道通风散栏牛舍中的575头泌乳荷斯坦奶牛测量直肠温度。新建的隧道通风牛舍中的奶牛直肠温度低于装有喷头和风扇的牛舍,但对由装有喷头和风扇的牛舍改造而成的隧道通风牛舍而言并非如此(交互作用,P = 0.0129)。在第二项研究中,对三个装有喷头和风扇的牛舍以及两个隧道通风牛舍中的8470头泌乳荷斯坦奶牛,检查其产奶后前90天的平均日产奶量。在凉爽天气(10月至3月)产犊的奶牛产奶量高于(P < 0.0001)在炎热天气(4月至9月)产犊的奶牛。隧道通风牛舍中的奶牛产奶量季节性减少幅度(P = 0.037)(减少3.5%)低于装有喷头和风扇的牛舍中的奶牛(减少5.8%)。鉴于热应激影响存在这种差异,据估计,奶牛场在隧道通风牛舍中每头牛的空间投资可比在装有喷头和风扇的牛舍中多投入高达332美元。得出的结论是,将奶牛饲养在隧道通风牛舍中可减少热应激对体温调节和产奶量的影响。

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