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鼻黏膜和颈动脉网对绵羊下丘脑温度的影响。

The influence of the nasal mucosa and the carotid rete upon hypothalamic temperature in sheep.

作者信息

Baker M A, Hayward J N

出版信息

J Physiol. 1968 Oct;198(3):561-79. doi: 10.1113/jphysiol.1968.sp008626.

DOI:10.1113/jphysiol.1968.sp008626
PMID:5685288
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1365282/
Abstract
  1. In chronically-prepared sheep, intracranial temperatures were measured in the cavernous sinus among the vessels of the carotid rete and at the circle of Willis extravascularly, and in the preoptic area and in other brain stem regions. Extracranial temperatures were measured intravascularly in the carotid or internal maxillary arteries and on the nasal mucosa and the skin of the ear.2. At 20 degrees C ambient temperature, shifts in temperature of the hypothalamus and of other brain sites paralleled temperature shifts in the cerebral arterial blood which was cooler than central arterial blood. During periods of arousal and of paradoxical sleep, vasoconstriction of the nasal mucosa and the ear skin occurred and temperatures at the cerebral arteries and in the brain rose without a comparable rise in central arterial blood temperature.3. Anaesthetic doses of barbiturate abolished the temperature oscillations in the cerebral arterial blood and the brain. When air was blown rapidly over the nasal mucosa in anaesthetized animals, temperatures dropped precipitously in the cavernous sinus, at the cerebral arteries, and in the brain, while central arterial temperature fell only slightly. Injections of latex into the facial venous system demonstrated a venous pathway from the nasal mucosa to the cavernous sinus.4. When sheep were exposed to 45-50 degrees C ambient temperature, respiratory rate increased 5-10 times and the temperature gradient between central and cerebral arterial blood widened.5. It is concluded that venous blood returning from the nasal mucosa and the skin of the head to the cavernous sinus cools the central arterial blood in the carotid rete. This is an important factor in the maintenance of hypothalamic temperature in the wool-covered, long-nosed, panting sheep and undoubtedly affects hypothalamic thermoreceptors and temperature regulation in artiodactyls.
摘要
  1. 在长期准备的绵羊中,在海绵窦内、颈动脉网血管之间以及 Willis 环血管外测量颅内温度,同时在视前区和其他脑干区域进行测量。颅外温度通过在颈动脉或上颌内动脉内、鼻黏膜和耳部皮肤处进行血管内测量。

  2. 在环境温度为 20 摄氏度时,下丘脑和其他脑区的温度变化与比中央动脉血温度低的脑动脉血温度变化平行。在觉醒期和异相睡眠期,鼻黏膜和耳部皮肤血管收缩,脑动脉和脑内温度升高,而中央动脉血温度没有相应升高。

  3. 巴比妥类麻醉剂量消除了脑动脉血和脑内的温度振荡。当在麻醉动物的鼻黏膜上快速吹气时,海绵窦、脑动脉和脑内的温度急剧下降,而中央动脉温度仅略有下降。向面部静脉系统注射乳胶显示了从鼻黏膜到海绵窦的静脉通路。

  4. 当绵羊暴露于 45 - 50 摄氏度的环境温度时,呼吸频率增加 5 - 10 倍,中央动脉血和脑动脉血之间的温度梯度增大。

  5. 得出的结论是,从鼻黏膜和头部皮肤回流到海绵窦的静脉血冷却了颈动脉网中的中央动脉血。这是覆盖羊毛、长鼻、喘气绵羊维持下丘脑温度的一个重要因素,无疑会影响偶蹄动物的下丘脑温度感受器和温度调节。

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