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Principal component based system identification and its application to the study of cardiovascular regulation

机译:基于主成分的系统辨识及其在心血管调节研究中的应用

摘要

(cont.) Our methods analyze the coupling between instantaneous lung volume and heart rate and, subsequently, derive representative indices of parasympathetic and sympathetic control based on physiological and experimental findings. The validity of each method is evaluated via experimental data collected following interventions with known effect on the parasympathetic or sympathetic control. With the above techniques, this thesis explores an important topic in the field of space medicine: effects of simulated microgravity on cardiac autonomic control and orthostatic intolerance (OI). Experimental data from a prolonged bed rest study (simulation of microgravity condition) are analyzed and the conclusions are: 1) prolonged bed rest may impair autonomic control of heart rate; 2) orthostatic intolerance after bed rest is associated with impaired sympathetic responsiveness; 3) there may be a pre-bed rest predisposition to the development of OI after bed rest. These findings may have significance for studying Earth-bound orthostatic hypotension as well as for designing effective countermeasures to post-flight OI. In addition, they also indicate the efficacy of our proposed methods for autonomic function quantification.
机译:(续)我们的方法分析了瞬时肺容量和心率之间的耦合,随后根据生理和实验结果得出了副交感和交感控制的代表性指标。每种方法的有效性通过干预后收集的实验数据进行评估,这些干预对副交感神经或交感神经控制有已知作用。利用以上技术,本论文探索了空间医学领域的一个重要课题:模拟微重力对心脏自主神经控制和体位不耐受的影响。分析了长时间卧床研究(模拟微重力条件)的实验数据,得出以下结论:1)长时间卧床可能会损害心律的自主控制; 2)卧床休息后的体位不耐受与交感反应能力下降有关; 3)卧床休息后可能会对OI的发展产生卧床休息的倾向。这些发现对于研究与地面有关的体位性低血压以及设计飞行后OI的有效对策具有重要意义。此外,它们还表明了我们提出的用于自主功能定量的方法的功效。

著录项

  • 作者

    Xiao Xinshu;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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