首页> 外文会议>ASME summer bioengineering conference;SBC2009 >NUMERICAL SIMULATION OF ULTRASONIC COLOR BLOOD FLOW IMAGING IN THE CAROTID ARTERY: COMPARING A 1st ORDER APPROACH AND FULLY COUPLED APPROACH
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NUMERICAL SIMULATION OF ULTRASONIC COLOR BLOOD FLOW IMAGING IN THE CAROTID ARTERY: COMPARING A 1st ORDER APPROACH AND FULLY COUPLED APPROACH

机译:颈动脉超声彩色血流成像的数值模拟:比较一阶方法和全耦合方法

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Ultrasonic imaging is widely applied for visualization of blood flow using different imaging modalities. However, due to the inherent physical limitations of the ultrasonic imaging process, the actual flow dynamics and the information embedded in the ultrasound image do not necessarily strictly correspond. Computational fluid dynamics (CFD) can play an important role in interpreting and improving ultrasound imaging via numerical simulation of ultrasound images. For this purpose, CFD velocity data can be directly processed to mimic ultrasonic images (1st order approach) or can be further coupled to ultrasound simulation software, providing a fully coupled approach. We compared both methods for the clinically relevant case of color flow imaging of the carotid artery. We conclude that for this application, the 1st order approach leads to results lacking indispensable properties of the imaging process, i.e., (i) the imaging dynamics, and (ii) the statistical properties of the ultrasonic velocity estimator.
机译:超声成像已广泛应用于使用不同成像方式的血流可视化。但是,由于超声成像过程的固有物理局限性,实际的流体动力学和嵌入超声图像中的信息不一定严格对应。通过对超声图像进行数值模拟,计算流体力学(CFD)在解释和改善超声成像中可以发挥重要作用。为此,可以直接处理CFD速度数据以模拟超声图像(一阶方法),或者可以进一步将其耦合到超声仿真软件,从而提供完全耦合的方法。我们比较了两种方法对颈动脉彩色流成像的临床相关情况。我们得出结论,对于这种应用,一阶方法导致结果缺乏成像过程必不可少的特性,即(i)成像动力学和(ii)超声速度估计器的统计特性。

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