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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Assessment of numerical simulation strategies for ultrasonic color blood flow imaging, based on a computer and experimental model of the carotid artery.
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Assessment of numerical simulation strategies for ultrasonic color blood flow imaging, based on a computer and experimental model of the carotid artery.

机译:基于计算机和颈动脉实验模型,评估超声彩色血流成像的数值模拟策略。

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摘要

Ultrasonic Doppler techniques are well established and allow qualitative and quantitative flow analysis. However, due to inherent limitations of the imaging process, the actual flow dynamics and the ultrasound (US) image do not always correspond. To investigate the performance of ultrasonic flow imaging methods, computational fluid dynamics (CFD) can play an important role. CFD simulations can be directly processed to mimic ultrasonic images or can be further coupled to ultrasound simulation models. We studied both approaches in the clinically relevant setting of a carotid artery using color flow images (CFI). The first order approach consisted of producing ultrasound images by color-coding CFD-simulations. For the second order approach, CFI was simulated using an ultrasound simulator, which models blood as a collection of point scatterers moving according to the CFD velocity fields. Color flow images were also measured in an experimental setup of the same carotid geometry for comparison. Results showed that during dynamic stages of the cardiac cycle, realistic ultrasound data can only be achieved when incorporating both the dynamic image formation and the measurement statistics into the simulations.
机译:超声多普勒技术已经很成熟,可以进行定性和定量的流量分析。但是,由于成像过程的固有局限性,实际的流动动力学和超声(US)图像并不总是对应的。为了研究超声流成像方法的性能,计算流体动力学(CFD)可以发挥重要作用。 CFD模拟可以直接进行处理以模拟超声图像,或者可以进一步与超声模拟模型耦合。我们使用彩色流图像(CFI)研究了颈动脉临床相关设置中的两种方法。一级方法包括通过对CFD仿真进行颜色编码来生成超声图像。对于二阶方法,使用超声波模拟器对CFI进行了模拟,该模拟器将血液建模为根据CFD速度场移动的点散射体的集合。还在相同颈动脉几何形状的实验装置中测量了彩色流图像以进行比较。结果表明,在心动周期的动态阶段,只有将动态图像形成和测量统计信息都纳入仿真中才能获得真实的超声数据。

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