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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Simulation of the Second-Harmonic Ultrasound Field in Heterogeneous Soft Tissue Using a Mixed-Domain Method
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Simulation of the Second-Harmonic Ultrasound Field in Heterogeneous Soft Tissue Using a Mixed-Domain Method

机译:用混合域法模拟异质软组织中的二谐波超声场

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A mixed-domain method (MDM) dubbed frequency-specific MDM (FSMDM) is introduced for the simulation of the second-harmonic ultrasound field in weakly heterogeneous media. The governing equation for the second harmonics is derived based on the quasi-linear theory. The speed of sound, nonlinear coefficient, and attenuation coefficient are all spatially varying functions in the equation. The fundamental frequency pressure field is first solved by the FSMDM and it is subsequently used as the source term for the second-harmonics equation. This equation can be again solved by the FSMDM to rapidly obtain the second-harmonic pressure field. Five 2-D cases, including one with a realistic human tissue map, are studied to systematically verify the proposed method. Results from the previously developed transient MUM are used as the benchmark solutions. Comparisons show that the two methods give similar results for all cases. More importantly, the FSMDM has a crucial advantage over the transient MDM in that it can be two orders of magnitude faster.
机译:引入了混合域方法(MDM)被称为频率特定的MDM(FSMDM),用于模拟弱异构介质中的二谐波超声场。基于准线性理论导出第二次谐波的控制方程。声音,非线性系数和衰减系数的速度是等式中的所有空间变化的功能。基本频率压力场首先通过FSMDM解决,随后将其用作第二次谐波方程的源术语。该等式可以通过FSMDM再次解决,以快速获得第二谐波压力场。研究了五个2-D案例,包括具有现实人体组织图的一个,以系统地验证所提出的方法。先前发达的瞬态妈妈的结果用作基准解决方案。比较表明,这两种方法给出了所有情况的类似结果。更重要的是,FSMDM对瞬态MDM具有重要的优势,因为它可以更快地是两个数量级。

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