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暴露于寒冷和缺水环境下的家兔热呼吸急促的抑制作用。

Inhibition of thermal tachypnoea in rabbits following exposure to cold and water deprivation.

作者信息

Maskrey M, Nicol S C

出版信息

J Physiol. 1975 Nov;252(2):481-90. doi: 10.1113/jphysiol.1975.sp011153.

Abstract
  1. Rabbits were clipped and exposed in turn to four environmental conditions: control (C), cold exposure (CE), water deprivation (WD) and water deprivation and cold exposure together (WD/CE). 2. Following each type of treatment, the rabbits were exposed for 1 hr to an ambient temperature (Ta) of 35 degrees C. During this time, respiratory frequency (RF), rectal temperature (Tre), activity and oxygen consumption (V02) were recorded. 3. It was found that under both cold exposure and water deprivation conditions, the mean respiratory frequency during the first 30 min of heat exposure was reduced when compared with controls. This was associated with a delay in the onset of thermal tachypnoea. Under conditions of water deprivation and cold exposure together, the mean respiratory frequency was further reduced and the length of the delay was increased. 4. Previous cold exposure led to an increase in the V02 measured at 35 degrees C, whereas the V02, after water deprivation and water deprivation and cold exposure together were not significantly different from the control. 5. Neither the initial Tre nor the change in the Tre during the course of the heat exposure were significantly different from the controls under any of the experimental conditions. 6. It is concluded that both water deprivation and previous cold exposure cause a block to panting in the heat and that the blocking mechanisms involved are closely interrelated. It is also concluded that neither the metabolic rate of the animal nor its initial or final Tre are important factors in determing the degree to which thermal tachypnoea is inhibited.
摘要
  1. 依次将兔子剪毛并暴露于四种环境条件下:对照(C)、冷暴露(CE)、禁水(WD)以及禁水与冷暴露同时进行(WD/CE)。2. 每种处理后,将兔子置于35摄氏度的环境温度(Ta)下暴露1小时。在此期间,记录呼吸频率(RF)、直肠温度(Tre)、活动情况及耗氧量(V02)。3. 结果发现,在冷暴露和禁水条件下,与对照组相比,热暴露最初30分钟内的平均呼吸频率降低。这与热喘发作延迟有关。在禁水与冷暴露同时进行的条件下,平均呼吸频率进一步降低,延迟时间延长。4. 先前的冷暴露导致在35摄氏度时测得的V02增加,而禁水以及禁水与冷暴露同时进行后的V02与对照组无显著差异。5. 在任何实验条件下,初始Tre以及热暴露过程中Tre的变化与对照组均无显著差异。6. 得出结论,禁水和先前的冷暴露均会导致热暴露时喘气受阻,且所涉及的阻碍机制密切相关。还得出结论,动物的代谢率及其初始或最终Tre均不是决定热喘抑制程度的重要因素。

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