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首页> 外文期刊>Annals of Biomedical Engineering >Fundamental Study of Ultrasonic-Measurement-Integrated Simulation of Real Blood Flow in the Aorta
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Fundamental Study of Ultrasonic-Measurement-Integrated Simulation of Real Blood Flow in the Aorta

机译:超声测量综合模拟主动脉中实际血流的基础研究

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Acquisition of detailed information on the velocity and pressure fields of the blood flow is essential to achieve accurate diagnosis or treatment for serious circulatory diseases such as aortic aneurysms. A possible way to obtain such information is integration of numerical simulation and color Doppler ultrasonography in the framework of a flow observer. This methodology, namely, Ultrasonic-Measurement-Integrated (UMI) Simulation, consists of the following processes. At each time step of numerical simulation, the difference between the measurable output signal and the signal indicated by numerical simulation is evaluated. Feedback signals are generated from the difference, and numerical simulation is updated applying the feedback signal to compensate for the difference. This paper deals with a numerical study on the fundamental characteristics of UMI simulation using a simple two-dimensional model problem for the blood flow in an aorta with an aneurysm. The effect of the number of feedback points and the feedback formula are investigated systematically. It is revealed that the result of UMI simulation in the feedback domain rapidly converges to the standard solution, even with usually inevitable incorrect upstream boundary conditions. Finally, an example of UMI simulation with feedback from real color Doppler measurement also shows a good agreement with measurement.
机译:获取有关血流速度和压力场的详细信息对于实现对严重循环系统疾病(例如主动脉瘤)的准确诊断或治疗至关重要。获取此类信息的一种可能方法是将数字模拟和彩色多普勒超声检查集成在流量观察器的框架中。这种方法,即超声测量集成(UMI)模拟,由以下过程组成。在数值模拟的每个时间步,评估可测量的输出信号与数值模拟指示的信号之间的差异。从差异产生反馈信号,并应用该反馈信号更新数值模拟以补偿差异。本文使用简单的二维模型问题,对带有动脉瘤的主动脉中的血流进行UMI模拟基本特征的数值研究。系统地研究了反馈点数量和反馈公式的影响。结果表明,即使通常不可避免的不正确的上游边界条件,在反馈域中的UMI仿真结果也迅速收敛到标准解。最后,一个UMI模拟示例,该示例带有来自真实彩色多普勒测量的反馈,也显示了与测量的良好一致性。

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