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Effects of Lamb Wave in Therapeutic Ultrasound Transducer by Vibration Analysis

机译:振动分析对兰姆波在治疗超声换能器中的作用

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A typical single-element High Intensity Focused Ultrasound (HIFU) transducer has a spherical shell in order to focus the acoustic energy onto the focal spot. In a prototype PZT transducer we constructed, a mode of plate wave propagation in the shell was experimentally observed in addition to the uniform thickness vibration mode. Such an unwanted wave component may deform the ultrasonic power deposition pattern, which can potentially influence the therapeutic effects. In this study, we analyzed the vibrating behavior of a spherical piezoelectric transducer in two ways: by the reconstruction of the sound source distribution from a measured pressure field and by a numerical simulation of vibration based on a Finite Element Method (FEM). In the two-dimensional Fourier analysis performed in both time and space domain, the radial wavenumber spectrum showed a high peak, second to the highest peak corresponding to the uniform vibration. This corresponds to the waves propagating from the circumference towards the center of the spherical transducer like a symmetric mode of leaky Lamb waves. The leaked waves propagate at a constant angle with the shell surface in water and form a relatively large lobe on the axis at the nearside of the geometric focus. This nearside lobe, also observed in the measurement, may cause additional near field heating of tissues.
机译:典型的单元素高强度聚焦超声(HIFU)换能器具有球形外壳,以便将声能聚焦到焦点上。在我们构造的原型PZT换能器中,除了均匀厚度的振动模式外,还通过实验观察了板波在壳体中传播的模式。这样的有害波分量可能会使超声功率沉积图案变形,从而可能潜在地影响治疗效果。在这项研究中,我们以两种方式分析了球形压电换能器的振动行为:通过从测得的压力场重建声源分布,以及通过基于有限元方法(FEM)的振动数值模拟。在时域和空域中进行的二维傅立叶分析中,径向波数谱显示出一个高峰,其次于最高峰,与均匀振动相对应。这对应于从球形换能器的圆周向中心传播的波,就像泄漏的兰姆波的对称模式一样。泄漏的波在水中与壳表面以恒定的角度传播,并在几何焦点附近的轴上形成相对较大的波瓣。在测量中也观察到的这种旁瓣可能会引起组织的其他近场加热。

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