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Simulation, design, and implementation of external mechanical vibration for ultrasound shear wave elastography

机译:超声剪切波弹性成像的外部机械振动仿真,设计与实现

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Ultrasound shear wave elastography (SWE) has gained wide acceptance as a non-invasive and quantitative clinical diagnostic modality. To realize SWE on low-cost systems, external mechanical vibration (EMV) is rising as an alternative to acoustic radiation force (ARF) for shear wave generation. In this paper, we present simulation, design, and implementation of an EMV-based SWE concept. Multiple EMV designs were integrated with a commercial ultrasound system capable of conventional ARF-based SWE. Experimental results demonstrated effective shear wave generation with EMV and shear wave motion tracking using the commercial system on various tissue mimicking elasticity phantoms. Final shear wave reconstruction indicated good agreement in stiffness measurement between the ARF-based and the EMV-based approach.
机译:超声剪切波弹性成像(SWE)已被广泛接受为一种非侵入性的定量临床诊断手段。为了在低成本系统上实现SWE,外部机械振动(EMV)可以替代声辐射力(ARF)来产生剪切波。在本文中,我们介绍了基于EMV的SWE概念的仿真,设计和实现。多个EMV设计与能够基于常规ARF的SWE的商业超声系统集成在一起。实验结果表明,利用EMV有效产生剪切波并使用商业系统在模拟弹性体模的各种组织上有效地跟踪了剪切波运动。最终的剪切波重建表明基于ARF的方法和基于EMV的方法在刚度测量方面具有良好的一致性。

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