...
【24h】

Reliability of transfer function estimates in cardiovascular variability analysis.

机译:心血管变异性分析中传递函数估计值的可靠性。

获取原文
获取原文并翻译 | 示例
           

摘要

Transfer function (TF) analysis is a widely diffused technique in the assessment of the relationship between short-term cardiovascular variability signals, particularly blood pressure, heart rate and respiration. To guarantee the reliability of the estimates, a conventional threshold of 0.5 on the magnitude squared coherence (MSC) is commonly used, although (i) other analysis parameters play a role and (ii) lower values of MSC are frequently unavoidable in physiological systems. In this study, computer simulations are performed to assess the dependency of the bias and standard deviation (SD) of TF estimates on record length (RL), spectral window bandwidth (Bw) and MSC; to evaluate the accuracy of theoretical expressions for the computation of the confidence interval (CI) of the estimates; and to assess, in some representative situations, how faithfully observed TF shapes reproduce the underlying true functions in conditions of very low MSC. The accuracy of TF estimates increases non-linearly with increasing RL, and the benefit over 7 min is small. Using this RL, the relative bias for the TF modulus is < 10% for MSC > 0.2. Estimates of TF phase are unbiased. The SD of both the modulus and phase increases linearly as the MSC decrease to 0.4 and then, for lower MSC, increases markedly with nonlinear behaviour. Bw= 0.03Hz appears to be most suitable to reduce the error, preserving spectral resolution. CIs for the TF phase are highly reliable, whereas those for the modulus tend to be slightly narrower than the nominal value at high coherence values. Major features of the TF shape appear to be preserved in simulations with very low MSC. The major problem in TF estimation is the sharp increase in the variability of the measurements as the coherence decreases towards the lowest values. The combination of RL > or = 420s and Bw= 0.03Hz should be suggested in short-term cardiovascular variability studies. Although basic features of the true TF can be recovered even when the MSC is < 0.5, much greater values can be necessary when accurate point estimates are needed. Theoretical expressions for the computation of confidence intervals of the TF are adequate for practical purposes.
机译:传递函数(TF)分析是评估短期心血管变异信号(尤其是血压,心率和呼吸)之间关系的一种广泛使用的技术。为了保证估计的可靠性,通常使用幅度平方相干性(MSC)的常规阈值0.5,尽管(i)其他分析参数起着作用,并且(ii)在生理系统中,MSC的较低值通常是不可避免的。在这项研究中,进行计算机仿真以评估TF估计值的偏差和标准偏差(SD)对记录长度(RL),光谱窗口带宽(Bw)和MSC的依赖性;评估用于计算估计值的置信区间(CI)的理论表达式的准确性;并评估在某些代表性情况下,如何在非常低的MSC条件下忠实地观察到的TF形状重现了潜在的真实功能。 TF估计的准确性随RL的增加而非线性增加,并且在7分钟内的收益很小。使用此RL,对于MSC> 0.2,TF模量的相对偏差<10%。 TF相位的估计是无偏的。模数和相位的SD都随着MSC降低到0.4线性增加,然后,对于较低的MSC,随着非线性行为而显着增加。 Bw = 0.03Hz似乎最适合减少误差,并保持频谱分辨率。 TF相的CI高度可靠,而模量的CI则在高相干值下往往比标称值略窄。 TF形状的主要特征似乎在具有非常低MSC的模拟中得以保留。 TF估计中的主要问题是,随着相干性向最低值降低,测量的可变性急剧增加。在短期心血管变异性研究中应建议RL>或= 420s和Bw = 0.03Hz的组合。尽管即使MSC <0.5,也可以恢复真实TF的基本特征,但是当需要精确的点估计时,可能需要更大的值。用于计算TF的置信区间的理论表达式足以满足实际目的。

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