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使用超声多普勒设备测量流动血液的多普勒功率。

Measurement of the Doppler power of flowing blood using ultrasound Doppler devices.

作者信息

Huang Chih-Chung, Chou Hung-Lung, Chen Pay-Yu

机构信息

Department of Biomedical Engineering, National Cheng Kung University, Tainan, Taiwan.

Department of Electrical Engineering, Fu Jen Catholic University, New Taipei City, Taiwan.

出版信息

Ultrasound Med Biol. 2015 Feb;41(2):565-73. doi: 10.1016/j.ultrasmedbio.2014.09.032. Epub 2014 Dec 23.

Abstract

Measurement of the Doppler power of signals backscattered from flowing blood (henceforth referred to as the Doppler power of flowing blood) and the echogenicity of flowing blood have been used widely to assess the degree of red blood cell (RBC) aggregation for more than 20 y. Many studies have used Doppler flowmeters based on an analogue circuit design to obtain the Doppler shifts in the signals backscattered from flowing blood; however, some recent studies have mentioned that the analogue Doppler flowmeter exhibits a frequency-response problem whereby the backscattered energy is lost at higher Doppler shift frequencies. Therefore, the measured Doppler power of flowing blood and evaluations of RBC aggregation obtained using an analogue Doppler device may be inaccurate. To overcome this problem, the present study implemented a field-programmable gate array-based digital pulsed-wave Doppler flowmeter to measure the Doppler power of flowing blood, in the aim of providing more accurate assessments of RBC aggregation. A clinical duplex ultrasound imaging system that can acquire pulsed-wave Doppler spectrograms is now available, but its usefulness for estimating the ultrasound scattering properties of blood is still in doubt. Therefore, the echogenicity and Doppler power of flowing blood under the same flow conditions were measured using a laboratory pulser-receiver system and a clinical ultrasound system, respectively, for comparisons. The experiments were carried out using porcine blood under steady laminar flow with both RBC suspensions and whole blood. The experimental results indicated that a clinical ultrasound system used to measure the Doppler spectrograms is not suitable for quantifying Doppler power. However, the Doppler power measured using a digital Doppler flowmeter can reveal the relationship between backscattering signals and the properties of blood cells because the effects of frequency response are eliminated. The measurements of the Doppler power and echogenicity of flowing blood were compared with those obtained in several previous studies.

摘要

测量从流动血液反向散射的信号的多普勒功率(以下简称流动血液的多普勒功率)以及流动血液的回声性,在20多年来已被广泛用于评估红细胞(RBC)聚集程度。许多研究使用基于模拟电路设计的多普勒流量计来获取从流动血液反向散射的信号中的多普勒频移;然而,最近一些研究提到,模拟多普勒流量计存在频率响应问题,即在较高的多普勒频移频率下反向散射能量会损失。因此,使用模拟多普勒设备测量的流动血液的多普勒功率以及对RBC聚集的评估可能不准确。为克服这一问题,本研究采用基于现场可编程门阵列的数字脉冲波多普勒流量计来测量流动血液的多普勒功率,旨在更准确地评估RBC聚集。一种能够获取脉冲波多普勒频谱图的临床双功超声成像系统现已可用,但其在估计血液超声散射特性方面的实用性仍存疑问。因此,分别使用实验室脉冲发生器 - 接收器系统和临床超声系统,在相同流动条件下测量流动血液的回声性和多普勒功率,以进行比较。实验使用猪血液在稳定层流条件下,对RBC悬浮液和全血进行。实验结果表明,用于测量多普勒频谱图的临床超声系统不适用于量化多普勒功率。然而,使用数字多普勒流量计测量的多普勒功率可以揭示反向散射信号与血细胞特性之间的关系,因为消除了频率响应的影响。将流动血液的多普勒功率和回声性测量结果与之前几项研究中获得的结果进行了比较。

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