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不同年龄组正常受试者的心率分析。

Heart rate analysis in normal subjects of various age groups.

作者信息

Acharya U Rajendra, Kannathal N, Sing Ong Wai, Ping Luk Yi, Chua TjiLeng

机构信息

Dept. of ECE, Ngee Ann Polytechnic, 535, Clementi Road, Singapore 599489.

出版信息

Biomed Eng Online. 2004 Jul 20;3(1):24. doi: 10.1186/1475-925X-3-24.

Abstract

BACKGROUND

Analysis of heart rate variation (HRV) has become a popular noninvasive tool for assessing the activities of the autonomic nervous system (ANS). HRV analysis is based on the concept that fast fluctuations may specifically reflect changes of sympathetic and vagal activity. It shows that the structure generating the signal is not simply linear, but also involves nonlinear contributions. Linear parameters, Power spectral indice (LF/HF) is calculated with nonlinear indices Poincare plot geometry(SD1,SD2), Approximate Entropy (ApEn), Largest Lyapunov Exponent (LLE) and Detrended Fluctuation Analysis(DFA). The results show that, with aging the heart rate variability decreases. In this work, the ranges of all linear and nonlinear parameters for four age group normal subjects are presented with an accuracy of more than 89%. As a pre-analysis step, the HRV data is tested for nonlinearity using surrogate data analysis and the results exhibited a significant difference in the ApEn, LLE, SD1/SD2 and DFA parameters of the actual data and the surrogate data.

METHODS

The heart rate is analyzed using the various time domain parameters, frequency domain parameter and nonlinear parameters like Poincare geometry, ApEn, LLE and DFA.

RESULTS

In this work, the different linear and nonlinear parameters evaluated show a particular range for various cardiac abnormalities. And the results of these were subjected to 't' test with more than 89% confidence interval giving excellent 'p' values in all cases.

CONCLUSIONS

Heart rate variability (HRV) signal can be used as a reliable indicator of state of the heart. It becomes less random with the aging(less chaotic). This is evaluated by using various time domain, frequency domain and nonlinear parameters like SD1/SD2, ApEn, LLE alphas and alphal. Different ranges of non-linear parameters for various age groups are presented with 'p' value < or = 0.12.

摘要

背景

心率变异性(HRV)分析已成为评估自主神经系统(ANS)活动的一种流行的非侵入性工具。HRV分析基于这样一种概念,即快速波动可能特别反映交感神经和迷走神经活动的变化。研究表明,产生信号的结构不仅是线性的,还涉及非线性因素。线性参数功率谱指数(LF/HF)与非线性指标庞加莱图几何形状(SD1、SD2)、近似熵(ApEn)、最大李雅普诺夫指数(LLE)和去趋势波动分析(DFA)一起计算。结果表明,随着年龄增长,心率变异性降低。在这项研究中,给出了四个年龄组正常受试者所有线性和非线性参数的范围,准确率超过89%。作为预分析步骤,使用替代数据分析对HRV数据进行非线性测试,结果显示实际数据和替代数据的ApEn、LLE、SD1/SD2和DFA参数存在显著差异。

方法

使用各种时域参数、频域参数以及如庞加莱几何形状、ApEn、LLE和DFA等非线性参数来分析心率。

结果

在这项研究中,所评估的不同线性和非线性参数在各种心脏异常情况下显示出特定范围。并且这些结果进行了“t”检验,置信区间超过89%,在所有情况下都给出了优异的“p”值。

结论

心率变异性(HRV)信号可作为心脏状态的可靠指标。随着年龄增长,它变得随机性降低(混沌性降低)。这通过使用各种时域、频域和非线性参数如SD1/SD2、ApEn、LLE阿尔法和阿尔法1来评估。给出了不同年龄组非线性参数的不同范围,“p”值≤0.12。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e99c/493278/8b3d02696e15/1475-925X-3-24-1.jpg

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