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Cooling Laying Hens by Intermittent Partial Surface Spraying

机译:通过间歇局部喷涂冷却蛋鸡

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摘要

This study investigated the efficacy of intermittent partial surface sprinkling to cool caged layers at 20, 38, and 56 weeks of age. Ten birds were used per age group with two birds per paired trial (Experiment, Expt, and Control, Ctrl) that were subjected to an acute heat exposure of 40.0 ± 0.5°C air temperature, 45 ± 3% RH, and air velocity of 0.15 to 0.20 m/s for a maximum of 8 h. The Expt birds were sprinkled with water mist (8 mL/sprinkling session) on the head and appendages at 15-min intervals from the time when panting was observed; whereas, the Ctrl birds received no sprinkling. Continuous measurement of the rectal temperature and periodic thermographical measurement of the surface temperature of the birds were performed. The intermittent partial surface sprinkling had the following merits as compared with the control: lower body temperature rise (4.3 vs 5.7°C; P u3c 0.05), higher lethal heat load threshold (10.0 vs 6.6°C-h, P u3c 0.05), longer survival time (145 to u3e 480 vs 92 to 266 min), and reduced mortality (20 to 60% vs 100%). The maximum reduction in surface temperature of the head and appendages due to the sprinkling averaged 2.2°C. Under the present environmental conditions (i.e., 40°C, 45% RH, and 0.15 to 0.20 m/s), sprinkling once every 5 to 6 min would provide adequate cooling to prevent the surface temperature from rising. The concept of body heat load ( â) seems to provide an effective measurement of heat tolerance of the birds under different cooling schemes.
机译:这项研究调查了在20、38和56周龄时间歇性局部表面洒水冷却笼状蛋鸡的功效。每个年龄组使用十只鸟,每对配对试验(实验,实验和对照,Ctrl)使用两只鸟,这些鸟经受的急性热暴露为空气温度40.0±0.5°C,相对湿度45±3%和0.15至0.20 m / s,最长8小时。自观察到气喘吁吁之时起,每隔15分钟,在Expt禽的头部和附件上撒上水雾(8毫升/一次)。而Ctrl鸟没有洒水。进行了直肠温度的连续测量和鸟类表面温度的定期热成像测量。与对照组相比,间歇性局部表面洒水具有以下优点:体温升高较低(4.3 vs 5.7°C; P≥0.05),致死热负荷阈值较高(10.0 vs 6.6°Ch,P≥0.05),更长的生存时间(145至480分钟对92至266分钟),死亡率降低(20至60%对100%)。由于洒水,头部和附件的表面温度的最大降低平均为2.2°C。在目前的环境条件下(即40°C,45%RH和0.15至0.20 m / s),每5至6分钟撒一次水即可提供足够的冷却效果,以防止表面温度升高。体热负荷(â)的概念似乎可以有效地衡量不同冷却方案下禽类的耐热性。

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