...
首页> 外文期刊>Physiological Research >Baseline Values of Cardiovascular and Respiratory Parameters Predict Response to Acute Hypoxia in Young Healthy Men
【24h】

Baseline Values of Cardiovascular and Respiratory Parameters Predict Response to Acute Hypoxia in Young Healthy Men

机译:心血管和呼吸参数的基线值预测年轻健康男性急性缺氧的反应

获取原文
获取原文并翻译 | 示例
           

摘要

The majority of the available works have studied distinct hypoxic responses of respiratory and cardiovascular systems. This study examines how these systems interact while responding to hypoxia and whether baseline metrics moderate reactions to a hypoxic challenge. Central hemodynamic, aortic wave reflection, and gas exchange parameters were measured in 27 trained young men before and after 10-min normobaric isocapnic hypoxia (10 % O2). Associations were assessed by correlation and multiple regression analyses. Hypoxic changes in the parameters of pulse wave analysis such as augmentation index (-114 %, p=0.007), pulse pressure amplification (+ 6 %, p=0.020), time to aortic reflection wave (+ 21 %, p<0.001) report on the increase in arterial distensibility. Specifically, initially compliant arteries blunt the positive cardiac chronotropic response to hypoxia and facilitate the myocardial workload. The degree of blood oxygen desaturation is directly correlated with both baseline values and hypoxic responses of aortic and peripheral blood pressures. The hypoxia-induced gain in ventilation (VE), while controlling for basal VE and heart rate (HR), is inversely associated with Delta HR and Delta systolic blood pressure. The study suggests that cardiovascular and respiratory systems mutually supplement each other when responding to hypoxic challenge.
机译:大多数可用的作品研究了呼吸系统和心血管系统的不同缺氧反应。本研究探讨了这些系统在响应缺氧的同时互动以及基线度量是否适中对缺氧挑战的反应。在10分钟的常规非洲异欧洲缺氧(10%O2)之前和之后,在27次训练有素的年轻男性中测量中央血液动力学,主动脉波反射和气体交换参数。通过相关性和多元回归分析评估关联。脉搏波分析参数的缺氧变化,如增强指数(-114%,p = 0.007),脉冲压放大(+ 6%,p = 0.020),时间到主动脉反射波(+ 21%,p <0.001)报告动脉扩张性的增加。具体地,最初柔顺的动脉钝化阳性心脏的正向性反应,并促进心肌工作量。血氧去饱和度与基线值和主动脉和外周血压力的缺氧反应直接相关。通风(VE)的缺氧诱导的增益,同时控制基底Ve和心率(HR),与Delta HR和Delta收缩压相反。该研究表明,在响应缺氧挑战时,心血管和呼吸系统互相补充彼此。

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