首页> 外文期刊>American Journal of Physiology >Alpha-adrenergic contribution to the cardiovascular response to acute hypoxemia in the chick embryo.
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Alpha-adrenergic contribution to the cardiovascular response to acute hypoxemia in the chick embryo.

机译:α-肾上腺素对雏鸡胚胎对急性低氧血症的心血管反应的贡献。

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摘要

Fetal responses to acute hypoxemia include bradycardia, increase in blood pressure, and peripheral vasoconstriction. Peripheral vasoconstriction contributes to the redistribution of the cardiac output away from ancillary vascular beds toward myocardial, cerebral, and adrenal circulations. We investigated the effect of alpha-adrenergic receptor blockade on this fetal response. Fluorescent microspheres were used to measure cardiac output distribution during basal and hypoxemic conditions with and without phentolamine treatment. Phentolamine altered basal cardiac output distribution, indicating a basal alpha-adrenergic tone, but this was mainly noted at the earlier stages of incubation. During hypoxemia, phentolamine prevented vasoconstriction in the carcass. At day 19 of incubation, the percent cardiac output distributed to the carcass increased by 20% compared with a decrease in the control group by 17%. Phentolamine markedly attenuated the subsequent redistribution of the cardiac output toward the brain (from +102% in the control group to -25% in the phentolamine-treated group) and the heart (from +196% in the control group to +69% in the phentolamine-treated group). In the chick embryo, alpha-adrenergic mechanisms contribute to the maintenance of basal vascular tone and to the redistribution of the cardiac output away from the peripheral circulations toward the brain and heart during hypoxemic conditions.
机译:胎儿对急性低氧血症的反应包括心动过缓,血压升高和外周血管收缩。周围血管收缩有助于心输出量从辅助血管床向心肌,脑和肾上腺循环的重新分布。我们调查了α-肾上腺素受体阻滞对此胎儿反应的影响。荧光微球用于在有和没有苯妥拉明治疗的基础和低氧血症期间测量心输出量分布。酚妥拉明改变了基础心输出量分布,表明基础α-肾上腺素基调,但这主要是在孵化的早期阶段注意到的。在低氧血症期间,酚妥拉明可防止the体中的血管收缩。在孵化的第19天,分配到the体的心输出量百分比增加了20%,而对照组则减少了17%。酚妥拉明显着减弱了随后心输出量向大脑(从对照组的+ 102%到酚妥拉明治疗组的-25%)和心脏(从对照组的+ 196%到对照组的+ 69%)的重新分配。苯妥拉明治疗组)。在雏鸡胚胎中,α-肾上腺素能机制有助于维持低氧状态下的基础血管张力,并使心输出量从外周循环向脑和心脏重新分布。

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