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Diencephalic efflux of calcium ions in the monkey during exercise thermal stress and feeding

机译:运动热应激和进食期间猴子中钙离子的双脑外流

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摘要

1. The diencephalon of the unanaesthetized macaque monkey was radio-labelled with calcium by a microinjection of 6-8 μC 45Ca2+ into the third cerebral ventricle through a permanently implanted cannula. Successive 5 min push—pull perfusions of the mid-line hypothalamic region with an artificial C.S.F. were carried out at a rate of 28 μl./min every 20 min. A washout curve of declining 45Ca2+ radioactivity was thus generated.2. When the monkey exercised strenuously on a special `rowing machine' to obtain highly palatable banana pellets, its body temperature rose sharply. As the monkey exercised, during a sequence of push—pull perfusions, the concurrent efflux of 45Ca2+ ions increased markedly in the corresponding samples of diencephalic perfusate. This enhanced activity of calcium ions continued throughout a 30 min work period and persisted as long as the monkey's temperature was elevated in the interval immediately following exercise.3. Exposure of the monkey's trunk, between neck and thigh to cold air of 5 °C likewise augmented the amount of 45Ca2+ ions in the diencephalic push—pull perfusates; however, a similar exposure to air warmed to 35 °C failed to alter the pattern of 45Ca2+ efflux from the animal's diencephalon. If a fasted monkey consumed only the banana pellets but was not exercised, the level of 45Ca2+ in the perfusate also increased transiently, just at the onset of feeding.4. We conclude that a local change in calcium transport, binding or other cellular activity of the cation within the diencephalon could play an important role in the central mechanism underlying the set-point rise in a primate's temperature which accompanies vigorous exercise. Further, the results support the idea that this cation functions in the diencephalic control of metabolic heat production as well as in the overall processes of energy metabolism, particularly in relation to feeding.
机译:1.通过永久性植入6-8μC 45 Ca 2 + 到第三脑室,将未麻醉的猕猴的间脑用钙进行放射性标记。套管。连续5分钟推入-用人工C.S.F.拉中下丘脑区域的灌注。每20分钟以28微升/分钟的速度进行由此产生了放射性下降的 45 Ca 2 + 的洗脱曲线。2。当猴子在特殊的“划船机”上剧烈运动以获得可口的香蕉颗粒时,其体温急剧上升。随着猴子的运动,在一系列的推拉式灌注过程中,相应的双脑灌注液样品中同时出现的 45 Ca 2 + 离子流出明显增加。在运动后的30分钟内,钙离子的这种增强活性持续存在,只要在锻炼后立即升高猴子的温度,这种钙离子的活性就会持续存在。3。猴子的躯干,脖子和大腿之间的暴露于5°C的冷空气中同样会增加双脑推拉灌洗液中 45 Ca 2 + 离子的量;但是,类似的暴露于加热到35°C的空气中,也无法改变动物中脑的 45 Ca 2 + 外排的模式。如果禁食的猴子只吃了香蕉颗粒而没有锻炼,则灌肠中灌肠中 45 Ca 2 + 的水平也会短暂增加,即刚开始喂食时4。 。我们得出的结论是,局部脑中阳离子的钙转运,结合或其他细胞活性的局部变化可能在灵长类动物伴随剧烈运动的温度设定值升高的中枢机制中发挥重要作用。此外,结果支持了这样的想法,即该阳离子在代谢热产生的双脑控制以及能量代谢的整个过程中起作用,特别是在进食方面。

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