人体激光多普勒通量运动分析:自回归模型与快速傅立叶变换的比较。

R Weidenhagen, A Wichmann, H G Koebe, L Lauterjung, H Fürst, K Messmer
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引用次数: 8

摘要

为了研究健康人及外周动脉闭塞症(PAOD)患者激光多普勒(LD)磁通运动,需要对LD信号进行频谱分析。自回归分析(AR)是功率谱估计的一种替代方法。通过描述两种光谱在通量运动波分析中的分析能力,将该方法与常用的快速傅立叶变换算法(FFT)进行了比较。记录8名健康志愿者和11名不同程度pad患者的前足LD信号。移动血细胞的通量、浓度和速度信号被数字化并存储以供离线分析。设计了专门的软件来计算LD信号的AR和FFT光谱,并比较两种方法对LD记录的光谱分析的适用性。此外,计算了三维谱图,以显示标准化挑衅机动期间随时间的通量变化。与FFT相比,AR有助于确定磁通运动波的频率和幅度。两组均可见低频大振幅波(LF)。高频小振幅波(HF波)主要出现在严重缺血时,11例患者中有7例,对照组8例中有2例。光谱显示,在所有健康对照中都有脉动波,但只有11例患者中有1例。与FFT相比,AR建模可以可靠地描述重要的磁链运动分量,并且在LD信号的频谱估计方面具有相当大的优势。
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Analysis of laser Doppler flux motion in man: comparison of autoregressive modelling and fast Fourier transformation.

In order to investigate laser Doppler (LD) flux motion in healthy subjects and patients with peripheral arterial occlusive disease (PAOD), spectrum analysis of LD signals is needed. Autoregressive analysis (AR) is presented as an alternative method of power spectrum estimation. This procedure is compared to the commonly used fast Fourier transform algorithm (FFT) by describing the analytical power of both spectra in the analysis of flux motion waves. LD signals were recorded from the forefoot of 8 healthy volunteers and 11 patients with different degrees of PAOD. The flux, concentration of moving blood cells and velocity signal was digitized and stored for off-line analysis. Special software was designed to calculate AR and FFT spectra of the LD signals and to compare the suitability of both methods for the spectral analysis of LD recordings. Additionally, three-dimensional spectrum diagrams were calculated to demonstrate time-dependent flux changes during standardized provocation maneuvers. AR facilitates the determination of frequency and amplitude of flux motion waves as compared to the FFT. Low frequency-large amplitude waves (LF waves) were detected in both groups. High frequency-small amplitude waves (HF waves), which predominantly appear in severe ischemia, were observed in 7 of the 11 patients and in 2 of the 8 controls. The spectra revealed pulsatile waves in all healthy controls, but only in 1 of the 11 patients. AR modelling allows a reliable description of important flux motion components and has considerable advantages in spectral estimation of LD signals as compared to the FFT.

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