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首页> 外文期刊>American Journal of Physiology >Thermoeffector thresholds and preferred ambient temperatures of the FOK rat.
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Thermoeffector thresholds and preferred ambient temperatures of the FOK rat.

机译:FOK大鼠的热效应阈值和首选环境温度。

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The FOK is an inbred rat strain with a genotypic adaptation to hot environments. The present study compared the thermoeffector thresholds and preferred ambient temperatures (Tpref) of the FOK rat with those of other rat strains. Male FOK, WKAH, and Donryu rats were used. First, they were loosely restrained and placed individually in a metabolic chamber with an ambient temperature of 26.0 degrees C. Their hypothalamic temperature (T(hy)), tail skin temperature (Tsk), and heat production (M) were measured. After thermal equilibrium had been attained, the rats were gradually warmed and then cooled using an intravenous thermode. The threshold T(hy) values for tail skin vasodilation and cold-induced thermogenesis were defined as the points at which sharp increases in Tsk and M occurred, respectively. The two thresholds of the FOK rat were lower than those of the WKAH and Donryu rats. In a second set of experiments, the FOK and WKAH rats were placed individually in a thermocline. Their intra-abdominal temperatures (T(ab)) were measured by a biotelemetry system, and the rats' Tpref values were estimated with the thermal gradient. Mean T(ab) and Tpref over a 24-h period for the FOK rat were significantly lower than those of the WKAH rat. The results suggest that in the FOK rat the control ranges of autonomic and behavioral thermoregulation are lower than those of the other rat strains examined. This contributes to the maintenance of core temperature at low levels.
机译:FOK是具有热环境基因型适应能力的近交大鼠品系。本研究比较了FOK大鼠与其他大鼠品系的热效应阈值和优选环境温度(Tpref)。使用雄性FOK,WKAH和Donryu大鼠。首先,将它们松散地约束并分别放置在环境温度为26.0摄氏度的代谢室中。测量其下丘脑温度(T(hy)),尾巴皮肤温度(Tsk)和发热(M)。在达到热平衡后,将大鼠逐渐加热,然后使用静脉内热线进行冷却。尾部皮肤血管扩张和冷诱导的生热的阈值T(hy)值分别定义为Tsk和M急剧增加的点。 FOK大鼠的两个阈值低于WKAH和Donryu大鼠的两个阈值。在第二组实验中,将FOK和WKAH大鼠分别放在温床中。通过生物遥测系统测量其腹内温度(T(ab)),并通过热梯度估算大鼠的Tpref值。 FOK大鼠在24小时内的平均T(ab)和Tpref明显低于WKAH大鼠。结果表明,在FOK大鼠中,自主神经和行为温度调节的控制范围低于所检查的其他大鼠品系。这有助于将核心温度维持在较低水平。

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