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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Tissue Acoustoelectric Effect Modeling From Solid Mechanics Theory
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Tissue Acoustoelectric Effect Modeling From Solid Mechanics Theory

机译:基于固体力学理论的组织声电效应建模

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摘要

The acoustoelectric (AE) effect is a basic physical phenomenon, which underlies the changes made in the conductivity of a medium by the application of focused ultrasound. Recently, based on the AE effect, several biomedical imaging techniques have been widely studied, such as ultrasound-modulated electrical impedance tomography and ultrasound current source density imaging. To further investigate the mechanism of the AE effect in tissue and to provide guidance for such techniques, we have modeled the tissue AE effect using the theory of solid mechanics. Both bulk compression and thermal expansion of tissue are considered and discussed. Computation simulation shows that the muscle AE effect result, conductivity change rate, is with 4.3-MPa peak pressure, satisfying the theoretical value. Bulk compression plays the main role for muscle AE effect, while thermal expansion makes almost no contribution to it. In addition, the AE signals of porcine muscle are measured at different focal positions. With the same magnitude order and the same change trend, the experiment result confirms that the simulation result is effective. Both simulation and experimental results validate that tissue AE effect modeling using solid mechanics theory is feasible, which is of significance for the further development of related biomedical imaging techniques.
机译:声电(AE)效应是一种基本的物理现象,它是通过应用聚焦超声而改变介质电导率的基础。近来,基于AE效应,已经广泛研究了几种生物医学成像技术,例如超声调制电阻抗层析成像和超声电流源密度成像。为进一步研究组织中AE效应的机理并为此类技术提供指导,我们已使用固体力学理论对组织AE效应进行了建模。组织的整体压缩和热膨胀都被考虑和讨论。计算仿真表明,肌肉AE效应的结果,电导率变化率,峰值压力为4.3 MPa,满足理论值。大块压缩在肌肉AE效应中起主要作用,而热膨胀对此几乎没有贡献。另外,在不同的焦点位置测量猪肌肉的AE信号。在相同的数量级和相同的变化趋势下,实验结果证实了仿真结果是有效的。仿真和实验结果均证实,利用固体力学理论进行组织AE效应建模是可行的,这对相关生物医学成像技术的进一步发展具有重要意义。

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