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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Design of a phased array for the generation of adaptive radiation force along a path surrounding a breast lesion for dynamic ultrasound elastography imaging
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Design of a phased array for the generation of adaptive radiation force along a path surrounding a breast lesion for dynamic ultrasound elastography imaging

机译:相控阵的设计,用于沿乳腺病变周围的路径生成自适应辐射力,以进行动态超声弹性成像

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摘要

This work demonstrates, with numerical simulations, the potential of an octagonal probe for the generation of radiation forces in a set of points following a path surrounding a breast lesion in the context of dynamic ultrasound elastography imaging. Because of the in-going wave adaptive focusing strategy, the proposed method is adapted to induce shear wave fronts to interact optimally with complex lesions. Transducer elements were based on 1-3 piezocomposite material. Threedimensional simulations combining the finite element method and boundary element method with periodic boundary conditions in the elevation direction were used to predict acoustic wave radiation in a targeted region of interest. The coupling factor of the piezocomposite material and the radiated power of the transducer were optimized. The transducer's electrical impedance was targeted to 50 :9;. The probe was simulated by assembling the designed transducer elements to build an octagonal phased-array with 256 elements on each edge (for a total of 2048 elements). The central frequency is 4.54 MHz; simulated transducer elements are able to deliver enough power and can generate the radiation force with a relatively low level of voltage excitation. Using dynamic transmitter beamforming techniques, the radiation force along a path and resulting acoustic pattern in the breast were simulated assuming a linear isotropic medium. Magnitude and orientation of the acoustic intensity (radiation force) at any point of a generation path could be controlled for the case of an example representing a heterogeneous medium with an embedded soft mechanical inclusion.
机译:这项工作通过数值模拟证明了八角形探针在动态超声弹性成像成像背景下沿着围绕乳腺病变的路径在一组点中产生辐射力的潜力。由于正在进行的波自适应聚焦策略,所提出的方法适用于诱导剪切波波前与复杂病变最佳地相互作用。换能器元件基于1-3压电复合材料。三维模拟将有限元法和边界元法与高程方向上的周期性边界条件相结合,用于预测感兴趣目标区域中的声波辐射。优化了压电复合材料的耦合系数和换能器的辐射功率。换能器的电阻抗目标为50:9;。通过组装设计的换能器元件以构建每个边上具有256个元件的八边形相控阵(总共2048个元件)来模拟探针。中心频率为4.54 MHz;模拟的换能器元件能够提供足够的功率,并且可以在相对较低的电压激励水平下产生辐射力。使用动态发射器波束成形技术,假设线性各向同性介质,沿路径的辐射力和在乳房中产生的声音模式被模拟。对于代表具有嵌入式软机械夹杂物的异质介质的示例,可以控制在生成路径的任何点处的声强(辐射力)的大小和方向。

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