Krausz S
Pflugers Arch. 1977 Dec 12;372(2):115-9. doi: 10.1007/BF00585324.
Air temperature differences between the internal and external nars (Ti-e), a qualitative measure of nasal blood flow, and the rate and ionic content of the mucous secretion of the lateral nasal gland, were determined in conscious, chronically instrumented dogs at both 25 degrees C and 42 degrees C environmental temperature, before and after administration of epinephrine, propanolol, phenoxybenzamine, acetylcholine and atropine. B. At 25 degrees C, epinephrine increased Ti-e. This was unaffected by propranolol, but returned to control values with phenoxybenzamine. Acetylcholine and atropine had no effect. At 42 degrees C, acetylcholine increased Ti-e; this was not reversed with atropine. Epinephrine caused a slight decrease in Ti-e at 42 degrees C. C. acetylcholine reduced mucous flow at 25 degrees C; atropine further decreased the flow. Changes in ionic content of the mucous suggest that cholinergic mechanisms affect pressure in the excretory duct of the gland. Epinephrine decreased the mucous flow at 42 degrees C; this was reversed with propranolol. D. It was concluded that nasal blood flow and lateral nasal gland mucous flow both possess sympathetic tone at 25 degrees C, the former being alpha-adrenergic, the latter beta-adrenergic. This tone appears important in reducing heat and water loss under normal conditions, and its reduction at high temperatures allows maximum efficiency of nasal cooling. The role of the parasympathetic system in respiratory heat and water exchange in the dog appears somewhat equivocal.
在环境温度为25摄氏度和42摄氏度的情况下,对清醒且长期植入仪器的犬类,在给予肾上腺素、普萘洛尔、酚苄明、乙酰胆碱和阿托品之前及之后,测定了鼻腔内外的气温差(Ti-e,一种衡量鼻血流的定性指标)以及鼻外侧腺黏液分泌的速率和离子含量。B. 在25摄氏度时,肾上腺素使Ti-e升高。这不受普萘洛尔的影响,但酚苄明可使其恢复至对照值。乙酰胆碱和阿托品无作用。在42摄氏度时,乙酰胆碱使Ti-e升高;阿托品不能使其逆转。肾上腺素在42摄氏度时使Ti-e略有降低。C. 乙酰胆碱在25摄氏度时减少黏液分泌;阿托品进一步减少分泌。黏液离子含量的变化表明胆碱能机制影响腺体排泄管的压力。肾上腺素在42摄氏度时减少黏液分泌;普萘洛尔可使其逆转。D. 得出的结论是,在25摄氏度时,鼻血流和鼻外侧腺黏液分泌均具有交感神经张力,前者为α-肾上腺素能,后者为β-肾上腺素能。这种张力在正常情况下对于减少热量和水分流失似乎很重要,而在高温下其降低可使鼻腔冷却达到最大效率。副交感神经系统在犬类呼吸热和水分交换中的作用似乎有些不明确。