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局部脉搏波速度的测量:信号处理对精度的影响。

Measurement of local pulse wave velocity: effects of signal processing on precision.

作者信息

Hermeling Evelien, Reesink Koen D, Reneman Robert S, Hoeks Arnold P G

机构信息

Department of Biophysics, Cardiovascular Research Institute Maastricht, Maastricht University, Maastricht, The Netherlands.

出版信息

Ultrasound Med Biol. 2007 May;33(5):774-81. doi: 10.1016/j.ultrasmedbio.2006.11.018. Epub 2007 Mar 26.

Abstract

Pulse wave velocity (PWV) provides information about the mechanical properties of the vessel: the stiffer the artery is, the higher the PWV will be. PWV measured over a short arterial segment facilitates direct characterization of local wall properties corrected for prevailing pressure without the necessity of measuring pulse pressure locally. Current methods for local PWV assessment have a poor precision, but it can be improved by applying linear regression to a characteristic time-point in distension waveforms as recorded simultaneously by multiple M-line ultrasounds. We investigated the precision of this method in a phantom scaled according to realistic in vivo conditions. Special attention was paid to the identification of the foot of the wave, using the maximum of the second derivative, the intersecting tangent and the 20% threshold method. Before foot detection, the distension waveforms were subjected to preprocessing with various filters. The precision of the maximum of the second derivative had a coefficient of variation (CV) of 0.45% and 10.45% for an eighth and second order low pass filter, respectively. The intersecting tangent and the threshold method were less sensitive to filtering; the CVs were 0.66% and 0.68% for the high order filter and 2.36% and 1.43% for the low order filter, respectively. We conclude that foot detection by a threshold of 20% or by the tangent method are more suitable to identify the foot of the wave to measure local PWV. Both methods are less sensitive to (phase) noise than the maximum of the second derivative method and exhibit good precision with a CV of less than 1%.

摘要

脉搏波速度(PWV)可提供有关血管机械特性的信息:动脉越僵硬,PWV就越高。在短动脉段上测量的PWV有助于直接表征经当前压力校正后的局部血管壁特性,而无需局部测量脉压。当前用于局部PWV评估的方法精度较差,但通过对多个M线超声同时记录的扩张波形中的特征时间点应用线性回归可以提高精度。我们在根据实际体内条件缩放的模型中研究了该方法的精度。特别关注使用二阶导数最大值、相交切线和20%阈值法来识别波谷。在波谷检测之前,对扩张波形进行各种滤波器的预处理。对于八阶和二阶低通滤波器,二阶导数最大值的精度的变异系数(CV)分别为0.45%和10.45%。相交切线法和阈值法对滤波不太敏感;对于高阶滤波器,CV分别为0.66%和0.68%,对于低阶滤波器,CV分别为2.

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