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介导北京鸭体温调节中特异性和非特异性温度效应的脑干位点。

Brain stem sites mediating specific and non-specific temperature effects on thermoregulation in the pekin duck.

作者信息

Martin R, Simon E, Simon-Oppermann C

出版信息

J Physiol. 1981 May;314:161-74. doi: 10.1113/jphysiol.1981.sp013698.

Abstract
  1. Thermodes were chronically implanted into various levels of the brain stem of sixteen Pekin ducks. The effects of local thermal stimulation on metabolic heat production, core temperature, peripheral skin temperature and respiratory frequency were investigated. 2. Four areas of thermode positions were determined according to the responses observed and were histologically identified at the end of the investigation. 3. Thermal stimulation of the lower mid-brain/upper pontine brain stem (Pos. III) elicited an increase in metabolic heat production, cutaneous vasoconstriction and rises in core temperature in response to cooling at thermoneutral and cold ambient conditions and, further, inhibition of panting by cooling and activation of panting by heating at warm ambient conditions. The metabolic response to cooling this brain stem section amounted to -0.1 W/kg. degrees C as compared with -7 W/kg. degrees C in response to total body cooling. 4. Cooling of the anterior and middle hypothalamus (Pos. II) caused vasodilatation in the skin and did not elicit shivering. The resulting drop in core temperature at a given degree of cooling was greater than the rise in core temperature in response to equivalent cooling of the lower mid-brain/upper pontine brain stem. 5. Cooling of the preoptic forebrain (Pos. I) and of the myelencephalon (Pos. IV) did not elicit thermoregulatory reactions. 6. It is concluded that the duck's brain stem contains thermoreceptive structures in the lower mid-brain/upper pontine section. However, the brain stem as a whole appears to contribute little to cold defence during general hypothermia because of the inhibitory effects originating in the anterior and middle hypothalamus. Cold defence in the duck, which is comparable in strength to that in mammals, has to rely on extracerebral thermosensory structures.
摘要
  1. 将热电极长期植入16只北京鸭脑干的不同水平部位。研究了局部热刺激对代谢产热、核心温度、外周皮肤温度和呼吸频率的影响。2. 根据观察到的反应确定了热电极放置的四个区域,并在研究结束时进行了组织学鉴定。3. 在热中性和寒冷环境条件下,对中脑下部/脑桥上段(位置III)进行热刺激会引发代谢产热增加、皮肤血管收缩以及核心温度升高,此外,在温暖环境条件下,冷却会抑制喘气,加热则会激活喘气。与全身冷却时-7W/kg·℃的代谢反应相比,冷却该脑干区域时的代谢反应为-0.1W/kg·℃。4. 冷却下丘脑前部和中部(位置II)会导致皮肤血管舒张,且不会引发颤抖。在给定的冷却程度下,由此导致的核心温度下降幅度大于中脑下部/脑桥上段同等冷却时核心温度的升高幅度。5. 冷却视前脑(位置I)和延髓(位置IV)不会引发体温调节反应。6. 得出的结论是,鸭的脑干在中脑下部/脑桥上段含有温度感受结构。然而,由于下丘脑前部和中部产生的抑制作用,整个脑干在全身低温期间对寒冷防御的贡献似乎很小。鸭的寒冷防御能力与哺乳动物相当,必须依赖脑外的温度感觉结构。

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Hypothalamic thermosensitivity in conscious Pekin ducks.清醒北京鸭的下丘脑温度敏感性
Am J Physiol. 1978 Sep;235(3):R130-40. doi: 10.1152/ajpregu.1978.235.3.R130.
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Extracerebral deep-body cold sensitivity in the Pekin duck.北京鸭的脑外深部体温敏感性
Am J Physiol. 1981 Sep;241(3):R136-45. doi: 10.1152/ajpregu.1981.241.3.R136.

本文引用的文献

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Thermosensitivity of medulla oblongata in control of body temperature.延髓在体温调节中的热敏性。
Am J Physiol. 1973 Apr;224(4):890-7. doi: 10.1152/ajplegacy.1973.224.4.890.
10
Hypothalamic thermosensitivity in conscious Pekin ducks.清醒北京鸭的下丘脑温度敏感性
Am J Physiol. 1978 Sep;235(3):R130-40. doi: 10.1152/ajpregu.1978.235.3.R130.

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