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首页> 外文期刊>Journal of Biomechanical Science and Engineering >Experimental Validation of Color Doppler Velocity Measurement for Ultrasonic-Measurement-Integrated Simulation of Blood Flow
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Experimental Validation of Color Doppler Velocity Measurement for Ultrasonic-Measurement-Integrated Simulation of Blood Flow

机译:彩色多普勒速度测量在超声测量集成血流模拟中的实验验证

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摘要

References(28) Cited-By(1) Cardiovascular diseases are closely related to blood flow. Ultrasonic-Measurement-Integrated (UMI) simulation, in which results of ultrasonic measurement are fed back to the flow simulation, was proposed in a previous study in order to reproduce the real blood flow accurately and efficiently. The usability of the UMI simulation was confirmed by numerical experiment, but the effectiveness of this simulation was strongly affected by the accuracy of the ultrasonic measurement. In this paper, we examined the accuracy of a commercial ultrasonic measurement device by an experiment with a PVA-H straight tube phantom. By analyzing the measured color Doppler images for a developed laminar flow inside the phantom, we obtained the relationship between the color Doppler value and the Doppler velocity (C-V relationship). It was revealed that the original C-V relationship provided in the device as a color bar was not suitable for quantitative evaluation of Doppler velocity to be used in UMI simulation. Compared with the original C-V relationship, the present C-V relationship results are in far better agreement with the analytic solution. Investigation of the normalized error confirmed that the result obtained with the present C-V relationship was reliable in cases of relatively high Reynolds number in the flow domain except near the wall. The two signal conditioning factors of the device had little influence on the Doppler velocity. Finally, we investigated the effect of temporal and spatial averaging of ultrasonic measurement data to clarify the relation between the number of averagings and the level of agreement with the analytic solution.
机译:参考文献(28)被引用(1)心血管疾病与血流密切相关。在先前的研究中提出了超声测量集成(UMI)模拟,其中将超声测量的结果反馈到流量模拟中,以便准确有效地重现真实的血流。通过数值实验证实了UMI仿真的可用性,但是该仿真的有效性受到超声测量精度的强烈影响。在本文中,我们通过对PVA-H直管体模进行实验,检验了商用超声测量设备的准确性。通过分析测得的幻影内部层流的彩色多普勒图像,我们获得了彩色多普勒值与多普勒速度之间的关系(C-V关系)。结果表明,设备中作为色条提供的原始C-V关系不适用于定量评估UMI仿真中使用的多普勒速度。与原始的C-V关系相比,当前的C-V关系结果与解析解具有更好的一致性。对归一化误差的研究证实,以当前C-V关系获得的结果在流域中除壁附近以外的雷诺数较高的情况下是可靠的。装置的两个信号调节因素对多普勒速度影响很小。最后,我们研究了超声测量数据的时空平均影响,以阐明平均次数与解析解的一致性水平之间的关系。

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