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A framework for simulating ultrasound imaging based on first order nonlinear pressure–velocity relations.

机译:基于一阶非线性压力 - 速度关系的超声成像仿真框架。

摘要

An ultrasound imaging framework modeled with the first order nonlinear pressure–velocity relations (NPVR) based simulation and implemented by a half-time staggered solution and pseudospectral method is presented in this paper. The framework is capable of simulating linear and nonlinear ultrasound propagation and reflections in a heterogeneous medium with different sound speeds and densities. It can be initialized with arbitrary focus, excitation and apodization for multiple individual channels in both 2D and 3D spatial fields. The simulated channel data can be generated using this framework, and ultrasound image can be obtained by beamforming the simulated channel data. Various results simulated by different algorithms are illustrated for comparisons. The root mean square (RMS) errors for each compared pulses are calculated. The linear propagation is validated by an angular spectrum approach (ASA) with a RMS error of 3% at the focal point for a 2D field, and Field II with RMS errors of 0.8% and 1.5% at the electronic and the elevation focuses for 3D fields, respectively. The accuracy for the NPVR based nonlinear propagation is investigated by comparing with the Abersim simulation for pulsed fields and with the nonlinear ASA for monochromatic fields. The RMS errors of the nonlinear pulses calculated by the NPVR and Abersim are respectively 2.4%, 7.4%, 17.6% and 36.6% corresponding to initial pressure amplitudes of 50 kPa, 200 kPa, 500 kPa and 1 MPa at the transducer. By increasing the sampling frequency for the strong nonlinearity, the RMS error for 1 MPa initial pressure amplitude is reduced from 36.6% to 27.3%.
机译:本文提出了一种基于一阶非线性压力-速度关系(NPVR)的仿真建模的超声成像框架,该框架由半时间交错解和伪谱方法实现。该框架能够模拟具有不同声速和密度的异质介质中的线性和非线性超声传播和反射。可以使用2D和3D空间场中的多个通道的任意聚焦,激发和切趾进行初始化。可以使用此框架生成模拟通道数据,并且可以通过对模拟通道数据进行波束成形来获取超声图像。说明了通过不同算法模拟的各种结果以进行比较。计算每个比较脉冲的均方根(RMS)误差。线性传播通过角谱方法(ASA)进行了验证,对于2D场,其焦点处的RMS误差为3%;对于IID,对于电子场3D和仰角焦点,场II的RMS误差为0.8%和1.5%字段。通过与脉冲场的Abersim仿真和单色场的非线性ASA进行比较,研究了基于NPVR的非线性传播的精度。 NPVR和Abersim计算出的非线性脉冲的RMS误差分别为2.4%,7.4%,17.6%和36.6%,对应于传感器处的初始压力幅值为50 kPa,200 kPa,500 kPa和1 MPa。通过增加强非线性的采样频率,初始压力幅度为1 MPa时的RMS误差从36.6%降低到27.3%。

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