Changes in pattern of heat loss at high ambient temperature caused by water deprivation in a large flightless bird, the emu.

S K Maloney, T J Dawson
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引用次数: 38

Abstract

When exposed to high ambient temperatures, birds defend body temperature by increasing evaporative water loss, via either respiratory or cutaneous water loss. Water deprivation can lead to changes in thermal responses and lower levels of water use for thermoregulation. We have studied the effect of 2-3 wk of water deprivation on the physiological responses of emus during exposure to an ambient temperature of 45 degrees C. Water deprivation led to a delay in the onset of panting (54 vs. 24 min after start of exposure) and to higher body temperatures (38.7 degrees vs. 38.3 degrees C) at the end of exposure to 45 degrees C. After panting was initiated and body temperature stabilised, the water-deprived emus had a lower total evaporative water loss (77 vs. 101 g/h), the same respiratory water loss (70 vs. 72 g/h), and a lower cutaneous water loss (7 vs. 29 g/h) than they did when hydrated. The factor contributing most to the lower total evaporative water loss in the dehydrated emus was a 47% reduction in dry thermal conductance, which led to a decrease in the exogenous environmental heat load and therefore the level of evaporation needed to defend body temperature. We suggest that the decrease in dry thermal conductance follows from the lower level of cutaneous water loss.

一种不会飞的大鸟,鸸鹋,在高温环境中缺水引起的热损失模式的变化。
当暴露在高温环境中时,鸟类通过增加蒸发水分的损失来保护体温,通过呼吸或皮肤水分的损失。缺水会导致热反应的变化,降低用于体温调节的水的使用水平。我们研究了2-3周的缺水对暴露在45摄氏度环境温度下鸸鹋生理反应的影响。缺水导致喘气发生的延迟(暴露开始后54分钟vs. 24分钟),并导致暴露于45摄氏度结束时体温升高(38.7摄氏度vs. 38.3摄氏度)。缺水的鸸鹋总蒸发失水(77比101 g/h),呼吸失水(70比72 g/h)相同,皮肤失水(7比29 g/h)低于水合状态。脱水鸸鹋蒸发水损失减少的最大原因是干热导率降低了47%,这导致外源环境热负荷降低,从而降低了保护体温所需的蒸发水平。我们认为,干导热系数的降低是由于皮肤失水水平的降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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