Caputa M, Kadziela W, Narebski J
Acta Neurobiol Exp (Wars). 1976;36(6):613-23.
The hypothalamic-arterial blood temperature gradient (THpr-TAC difference) was studied on 10 freely moving rabbits at ambient temperatures between 0 and 42 degrees Celsius. In cold environment, below 10 degrees Celsius the THpt-TAC gradient varied considerably, but some distinct correlations were found between vasomotor responses of the nasal mucosa and fluctuations of brain temperature, as well as between vasomotor responses of the ear pinnas and changes of the arterial blood temperature. Vasodilatation of the nasal mucosa or the ear pinna caused respectively a drop in brain temperature or in arterial blood temperature. Opposite changes were induced by vasoconstriction in those areas. Variations in THpt-TAC gradient resulted from oppositely directed vasomotor responses in the nasal mucosa and in the ear pinnas. At high ambient temperatures above 35 degrees Celsius thermal panting was accompanied by selective brain cooling with respect to the arterial blood. Blocking the heat loss from the nasal mucosa caused an increase of the THpt-TAC difference, and under these conditions brain temperature was determined solely by arterial blood temperature. The assumed mechanism of the selective brain cooling in rabbits is the exchange of heat through the neurocranial bottom, between the ventral brain and the spacious splanchnocranial venous lakes supplied with blood from the nasal mucosa.
在0至42摄氏度的环境温度下,对10只自由活动的兔子的下丘脑 - 动脉血温度梯度(THpr - TAC差值)进行了研究。在寒冷环境中,低于10摄氏度时,THpt - TAC梯度变化很大,但发现鼻黏膜血管运动反应与脑温波动之间以及耳廓血管运动反应与动脉血温度变化之间存在一些明显的相关性。鼻黏膜或耳廓的血管舒张分别导致脑温或动脉血温度下降。这些区域的血管收缩则引起相反的变化。THpt - TAC梯度的变化是由鼻黏膜和耳廓中方向相反的血管运动反应引起的。在高于35摄氏度的高环境温度下,热喘呼吸伴随着相对于动脉血的选择性脑冷却。阻断鼻黏膜的热量散失会导致THpt - TAC差值增加,在这些条件下,脑温仅由动脉血温度决定。兔子选择性脑冷却的假定机制是通过神经颅底部,在腹侧脑与由鼻黏膜供血的宽敞内脏颅静脉湖之间进行热交换。