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首页> 外文期刊>The Journal of the Acoustical Society of America >Acoustic nonlinearity parameter tomography for biological tissues via parametric array from a circular piston source-Theoretical analysis and computer simulations
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Acoustic nonlinearity parameter tomography for biological tissues via parametric array from a circular piston source-Theoretical analysis and computer simulations

机译:通过圆形活塞源的参数阵列对生物组织进行声学非线性参数层析成像-理论分析和计算机模拟

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摘要

The acoustic nonlinearity parameter B/A describes the nonlinear features of a medium and may become a novel parameter for ultrasonic tissue characterization. This paper presents a theoretical analysis for acoustic nonlinear parameter tomography via a parametric array. As two primary waves of different frequencies are radiated simultaneously from a circular piston source, a secondary wave at the difference frequency is generated due to the nonlinear interaction of the primary waves. The axial and radial distributions of sound pressure amplitude for the generated difference frequency wave in the near field are calculated by a superposition of Gaussian beams. The calculated results indicated that the difference frequency component of the parametric array grows linearly with distance from the piston source. It therefore provides a better source to do the acoustic nonlinearity parameter tomography because the fundamental and second harmonic signals both have a near field that goes through many oscillations due to diffraction. By using a finite-amplitude insert substitution method and a filtered convolution algorithm, a computer simulation for B/A tomography from the calculated sound pressure of the difference frequency wave is studied. For biological tissues, the sound attenuation is considered and compensated in the image reconstruction. Nonlinear parameter computed tomography (CT) images for several biological sample models are obtained with quite good quality in this study.
机译:声学非线性参数B / A描述了介质的非线性特征,可能成为超声组织表征的新参数。本文介绍了通过参数阵列进行声学非线性参数层析成像的理论分析。当从圆形活塞源同时辐射两个不同频率的初级波时,由于初级波的非线性相互作用,产生了具有不同频率的次级波。通过叠加高斯光束,计算出近场中产生的差频波的声压幅度的轴向和径向分布。计算结果表明,参数阵列的差频分量随距活塞源的距离线性增长。因此,它为进行声学非线性参数层析成像提供了更好的来源,因为基波和二次谐波信号都具有近场,该近场由于衍射而经历许多振荡。通过使用有限振幅插入替换方法和滤波卷积算法,根据计算出的差频波声压,对B / A层析成像进行了计算机仿真研究。对于生物组织,在图像重建中考虑并补偿了声音衰减。在这项研究中获得了几种生物样品模型的非线性参数计算机断层扫描(CT)图像。

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