首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Distortion properties of the interval spectrum of IPFM generated heartbeats for heart rate variability analysis
【24h】

Distortion properties of the interval spectrum of IPFM generated heartbeats for heart rate variability analysis

机译:IPFM生成心跳的间隔频谱的失真特性,用于心率变异性分析

获取原文
获取原文并翻译 | 示例
       

摘要

The integral pulse frequency modulation (IPFM) model converts a continuous-time signal into a modulated series of event times, often represented as a pulse train. The IPFM process is important to the field of heart rate variability (HRV) as a simple model of the sinus modulation of heart rate. Here, the authors discuss the distortion properties associated with employing the interval spectrum for the recovery of the input signal from an IPFM process's output pulse train. The results state, in particular for HRV, how precisely the interval spectrum can be used to infer the modulation signal responsible for a series of heartbeats. The authors have developed a detailed analytical approximation of the interval spectrum of an IPFM process with multiple sinusoids as the input signal. Employing this result, they describe the structure and the distortion of the interval spectrum. The distortion properties of the interval spectrum are investigated systematically for a pair of frequency components. The effects of linear and nonlinear distortion of the fundamentals, the overall contribution of harmonic components to the total power, the relative contribution of "folded back" power due to aliasing and the total distortion of the input spectrum are investigated. The authors also provide detailed comparisons between the interval spectrum and the spectrum of counts (SOC). The spectral distortion is significant enough that caution should be taken when interpreting the interval spectrum, especially for high frequencies or large modulation amplitudes. Nevertheless, the distortion levels are not significantly larger than those of the SOC. Therefore, the spectrum of intervals may be considered a viable technique that suffers more distortion than the SOC.
机译:积分脉冲频率调制(IPFM)模型将连续时间信号转换为经过调制的一系列事件时间,通常表示为脉冲序列。 IPFM过程作为简单的心率窦性调节模型,对心率变异性(HRV)领域很重要。在这里,作者讨论了与使用间隔频谱从IPFM过程的输出脉冲序列恢复输入信号相关的失真特性。结果表明,特别是对于HRV,如何精确地使用间隔频谱来推断引起一系列心跳的调制信号。作者已开发出以多个正弦波作为输入信号的IPFM过程的间隔频谱的详细分析近似。利用这一结果,他们描述了间隔谱的结构和失真。系统地研究了一对频率分量的间隔频谱的失真特性。研究了基本原理的线性和非线性失真,谐波分量对总功率的总体贡献,由于混叠导致的“折返”功率的相对贡献以及输入频谱的总失真的影响。作者还提供了间隔频谱和计数频谱(SOC)之间的详细比较。频谱失真严重到足以在解释间隔频谱时要格外小心,尤其是对于高频或较大的调制幅度。但是,失真度不会比SOC大得多。因此,间隔频谱可以认为是一种可行的技术,它比SOC遭受更大的失真。

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