Suppr超能文献

慢膝关节运动产生的生理性髌股脉搏波序列的数学建模与频谱分析

Mathematical modeling and spectrum analysis of the physiological patello-femoral pulse train produced by slow knee movement.

作者信息

Zhang Y T, Frank C B, Rangayyan R M, Bell G D

机构信息

Department of Electrical and Computer Engineering, University of Calgary, Alta., Canada.

出版信息

IEEE Trans Biomed Eng. 1992 Sep;39(9):971-9. doi: 10.1109/10.256431.

Abstract

Analysis of vibration signals emitted by the knee joint has the potential for the development of a noninvasive procedure for the diagnosis and monitoring of knee pathology. In order to obtain as much information as possible from the power density spectrum of the knee vibration signal, it is necessary to identify the physiological factors (or physiologically relevant parameters) that shape the spectrum. This paper presents a mathematical model for knee vibration signals, in particular the physiological patello-femoral pulse (PFP) train produced by slow knee movement. It demonstrates through the mathematical model that the repetition rate of the physiological PFP train introduces repeated peaks in the power spectrum, and that it affects the spectrum mainly at low frequencies. The theoretical results also show that the spectral peaks at multiples of the PFP repetition rate become more evident when the variance of the interpulse interval (IPI) is small, and that these spectral peaks shift toward higher frequencies with increasing PFP repetition rates. To evaluate the mathematical model, a simulation algorithm was developed, which generates PFP signals with adjustable repetition rate and IPI variance. Signals generated by simulation were seen to possess representative spectral characteristics typically observed in physiological PFP signals. This simulation procedure allows an interactive examination of several factors which affect the PFP train spectrum. Finally, in vivo measurements of physiological PFP signals of normal volunteers are presented. Results of simulations and analysis of signals recorded from human subjects support the mathematical model's prediction that the IPI statistics play a very significant role in determining the low-end power spectrum of the physiological PFP signal.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对膝关节发出的振动信号进行分析,有可能开发出一种用于诊断和监测膝关节病变的非侵入性程序。为了从膝关节振动信号的功率密度谱中获取尽可能多的信息,有必要识别塑造该频谱的生理因素(或生理相关参数)。本文提出了一种膝关节振动信号的数学模型,特别是针对缓慢膝关节运动产生的生理髌股脉冲(PFP)序列。通过该数学模型表明,生理PFP序列的重复率在功率谱中引入了重复峰值,并且它主要在低频段影响频谱。理论结果还表明,当脉冲间期(IPI)的方差较小时,PFP重复率倍数处的频谱峰值会更加明显,并且随着PFP重复率的增加,这些频谱峰值会向更高频率移动。为了评估该数学模型,开发了一种模拟算法,该算法可生成具有可调重复率和IPI方差的PFP信号。模拟生成的信号被认为具有在生理PFP信号中通常观察到的代表性频谱特征。这种模拟程序允许对影响PFP序列频谱的几个因素进行交互式检查。最后,给出了正常志愿者生理PFP信号的体内测量结果。对人体受试者记录的信号进行模拟和分析的结果支持了数学模型的预测,即IPI统计量在确定生理PFP信号的低端功率谱方面起着非常重要的作用。(摘要截短为250字)

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验