激光多普勒流量测量信号的光谱分析

R. Campos, E. Figueiras, L. R. Ferreira, A. Humeau-Heurtier
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引用次数: 6

摘要

为了使激光多普勒流量测量技术(LDF)具有深度识别能力,研制了一种新型多波长激光多普勒流量测量样机。为了分析人体微循环血流中存在的频率振荡,探讨该激光多普勒流量计样机对LDF信号的傅里叶变换和功率谱密度进行计算,并探讨该样机对血流皮肤深度判别的潜力。利用相干函数计算了信号的谱依赖关系。我们的研究结果表明,当波长和纤维分离度改变时,新原型的灌注信号有明显的差异;这些结果在静止和局部血流扰动时均可发现。这些发现支持了我们的假设,即宽探头和更高波长测量更深层次的血流量。
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Spectral analysis of laser Doppler flowmetry signals
A new multi-wavelength laser Doppler flowmeter prototype with different spaced detection optical fibres, built in order to give depth discrimination capabilities to laser Doppler flowmetry technique (LDF), was developed. The Fourier transform and the power spectral density of LDF signals measured by the laser Doppler flowmeter prototype were calculated in order to analyze the frequency oscillations present in human microcirculatory blood flow and to explore the potential of the prototype for blood flood skin depth discrimination. The spectral dependence of the signals was also calculated using the coherence function. Our results show that perfusion signals from the new prototype present marked differences when wavelengths and fibre separations are modified; these results are found both at rest and during perturbations of local blood flow. These findings support our hypothesis that wide probes and higher wavelengths measure blood flux from deeper layers.
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