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Three-dimensional Ultrasound Doppler Simulation for Vascular Bifurcation Model

机译:血管分岔模型的三维超声多普勒仿真

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The three-dimensional ultrasound Doppler analysis of the blood flow in a bifurcated blood vessel was simulated using MATLABTM. Blood cells are treated as point scatterers randomly distributed in the blood vessel. The blood vessel model is divided into three regions, including the main branch and two subbranches of bifurcation. The velocity and next position of a scatterer (or blood cell) are determined by the laminar flow. The blood flow is simulated by displacing the scatterers between pulse emissions. The axial velocity is estimated using the autocorrelation method on the radio frequency (RF) data simulated by Field II software. A 3D Doppler analysis with angles of rotation of the transducer can accurately rebuild the blood flow direction and the lateral velocity component in each region. This simulation package provides a platform to evaluate the performance of 3-D Doppler imaging methods before the clinical application.
机译:使用Matlab模拟分叉血管中血流的三维超声多普勒分析 tm 。血细胞被视为随机分布在血管中的点散射体。血管模型分为三个区域,包括主要分支和两种分叉的子支链。散射体(或血细胞)的速度和下一个位置由层流确定。通过在脉冲排放之间移位散射体来模拟血流。使用现场II软件模拟的射频(RF)数据上的自相关方法估计轴向速度。具有换能器的旋转角度的3D多普勒分析可以精确地重建每个区域中的血流方向和横向速度分量。该仿真包提供了一种平台,用于评估临床应用前的3-D多普勒成像方法的性能。

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