首页> 外文会议>ASME international mechanical engineering congress and exposition >TEMPORAL VARIATION CHARACTERISTICS OF ANALYSIS ACCURACY IN TWO-DIMENSIONAL ULTRASONIC-MEASUREMENT-INTEGRATED BLOOD FLOW ANALYSIS
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TEMPORAL VARIATION CHARACTERISTICS OF ANALYSIS ACCURACY IN TWO-DIMENSIONAL ULTRASONIC-MEASUREMENT-INTEGRATED BLOOD FLOW ANALYSIS

机译:二维超声综合血流分析中分析准确性的时间变化特征

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A two-dimensional ultrasonic-measurement-integrated (2D-UMI) blood flow analysis system was developed for easy acquisition of an intravascular hemodynamics, which feeds back Doppler velocity obtained by an ultrasonic measurement to a numerical blood flow simulation for clinical application. In previous study, ultrasonic measurement and 2D-UMI simulation were performed to clarify the analysis accuracy for real flow field. Additionally, spatial variation characteristics of analysis accuracy was clarified by comparison of velocity vectors between 2D-UMI and 3D-CFD analysis results corresponding to an experimental flow. However, temporal variation of analysis accuracy of 2D-UMI analysis result has not been examined in spite of essential information for reduction of experimental measurement error due to speckle noise. The aim of this study was to clarify temporal variation characteristics of analysis accuracy of each velocity component obtained in 2D-UMI blood flow analysis. Comparisons of Doppler velocity V and (u, v) velocity profiles between measurement data, 2D-UMI, and 3D-CFD analysis results were performed, and their time variations were discussed. As a result, it was clarified that temporal variation of Doppler velocity error for measurement data became larger with increasing feedback gain. Temporal variations of u and v velocity component errors for 3D-CFD analysis result showed the same tendency as that of Doppler velocity in feedback gain.
机译:为了方便获取血管内血流动力学,开发了一种二维超声测量集成(2D-UMI)血流分析系统,该系统将通过超声测量获得的多普勒速度反馈到数值血流模拟中,以进行临床应用。在先前的研究中,进行了超声波测量和2D-UMI模拟以阐明实际流场的分析精度。此外,通过比较2D-UMI和3D-CFD分析结果(对应于实验流程)之间的速度矢量,可以明确分析精度的空间变化特征。但是,尽管减少了由于斑点噪声引起的实验测量误差的必要信息,但尚未检查2D-UMI分析结果的分析精度的时间变化。这项研究的目的是弄清2D-UMI血流分析中获得的每个速度分量的分析精度的时间变化特征。比较了测量数据,2D-UMI和3D-CFD分析结果之间的多普勒速度V和(u,v)速度曲线,并讨论了它们的时间变化。结果,澄清了随着反馈增益的增加,测量数据的多普勒速度误差的时间变化变大。用于3D-CFD分析结果的u和v速度分量误差的时间变化在反馈增益中显示出与多普勒速度相同的趋势。

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