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A shear wave propagation tracking method based on Modal Assurance Criterion in acoustic radiation force impulse imaging

机译:声辐射力脉冲成像中基于模态保证准则的剪切波传播跟踪方法

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Changes in stiffness of soft tissue are a sign of abnormalities. Therefore, techniques capable of estimating stiffness or elasticity of tissue can contribute in the assessment of various diseases. Shear wave elasticity imaging (SWEI) is a transient method of biomedical ultrasound elastography. SWEI can be performed using a single ultrasound transducer by applying an impulsive acoustic radiation force excitation to generate shear waves, whose propagation can be monitored using ultrafast imaging with plane wave in the region of interest (ROI). In the present study, Field II was used to simulate ultrasound radiation force field generated by a linear array transducer. And the motion caused by a high intensity tone burst in a homogenous viscoelastic medium was calculated using the finite element method (FEM). Then the Modal Assurance Criterion (MAC) method was presented to track the propagation of the shear wave. To verify the simulation results, an experiment was set with a High Intensity Focused Ultrasound (HIFU) transducer and SonixTouch and DAQ system to evaluate the validity and efficiencies of the MAC method. Finally, an image of shear wave propagation can be reconstructed from the delays and amplitudes of the echoes.
机译:软组织硬度的变化是异常的征兆。因此,能够估计组织的刚度或弹性的技术可以有助于各种疾病的评估。剪切波弹性成像(SWEI)是生物医学超声弹性成像的一种瞬态方法。可以使用单个超声换能器通过施加脉冲声辐射力激励来生成SWEI,以生成剪切波,可以使用感兴趣区域(ROI)中的平面波进行超快成像来监测其传播。在本研究中,Field II用于模拟线性阵列换能器产生的超声辐射力场。并使用有限元方法(FEM)计算了均质粘弹性介质中高强度音调爆发引起的运动。然后提出了模态保证准则(MAC)方法来跟踪剪切波的传播。为了验证仿真结果,使用高强度聚焦超声(HIFU)换能器以及SonixTouch和DAQ系统进行了实验,以评估MAC方法的有效性和效率。最后,可以从回波的延迟和幅度中重建出剪切波传播的图像。

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