...
首页> 外文期刊>Respiratory physiology & neurobiology >Acute regulation of hematocrit and acid-base balance in chicken embryos in response to severe intrinsic hypercapnic hypoxia.
【24h】

Acute regulation of hematocrit and acid-base balance in chicken embryos in response to severe intrinsic hypercapnic hypoxia.

机译:对严重的内在高碳酸血症性缺氧的反应,急性调节鸡胚中的血细胞比容和酸碱平衡。

获取原文
获取原文并翻译 | 示例
           

摘要

The regulation of blood acid-base balance and hematology in day 15 chicken embryos in response to partial water submersion (with egg's air cell in air) and complete submersion producing severe intrinsic hypercapnic hypoxia and recovery in air was studied. The acid-base disturbance during submersion was characterized by initial rapid respiratory changes and then superseded by metabolic processes, resulting in a large progressive hysteresis. Throughout submersion and recovery, blood lactate concentration changed swiftly along with the changes in bicarbonate concentration ([HCO3(-)]), indicating that anaerobic glycolysis determined overall acid-base disturbances. Both partial and complete submersion produced large, rapid increases in hematocrit through proportional increases in mean corpuscular volume and red blood cell concentration. Death ensued once the internal pool of O2 was exhausted and/or the acid-base disturbance became too severe for survival (i.e., [HCO3(-)]a<~10mmolL(-1)). However, embryos recovered from acid-base and hematological disturbances within 120min recovery in air after short bouts of complete (20min) or partial (60min) submersion, suggesting that shorter severe intrinsic hypercapnic hypoxia does not compromise viability of embryos.
机译:研究了第15天鸡胚对部分水淹没(鸡蛋的空气细胞在空气中)和完全浸没产生严重的内在高碳酸血症性缺氧并在空气中恢复的反应中血酸碱平衡和血液学的调节。浸没过程中酸碱紊乱的特征是最初的快速呼吸变化,然后被代谢过程所取代,从而导致较大的进行性滞后。在整个淹没和恢复过程中,血液中的乳酸浓度随碳酸氢盐浓度([HCO3(-)])的变化而迅速变化,表明厌氧糖酵解决定了整体的酸碱紊乱。通过平均红细胞体积和红细胞浓度的成比例增加,部分和完全浸没都会产生大量的血细胞比容快速增加。一旦内部氧气池耗尽和/或酸碱紊乱变得严重到无法生存(即[HCO3(-)] a <〜10mmolL(-1)),就会导致死亡。但是,胚胎在完全(20分钟)或部分(60分钟)浸入后短暂回荡后,在空气中恢复120分钟内即可从酸碱和血液系统疾病中恢复,这表明较短的严重内在高碳酸血症性低氧不会损害胚胎的生存能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号