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Dual-frequency ultrasound imaging and therapeutic bilaminar array using frequency selective isolation layer

机译:使用频率选择性隔离层的双频超声成像和治疗性双唇阵列

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摘要

A new ultrasound array transducer with two different optimal frequencies designed for diagnosis and therapy integration in Doppler imaging-based transcranial sonothrombolysis is described. Previous studies have shown that respective frequencies around 0.5 and 2 MHz are suitable for sonothrombolysis and Doppler imaging. Because of the small acoustic window available for transcranial ultrasound exposure, it is highly desirable that both therapeutic and diagnostic ultrasounds pass through the same aperture with high efficiency. To achieve such a dual-frequency array transducer, we propose a bilaminar array, having an array for imaging and another for therapy, with a frequency selective isolation layer between the two arrays. The function of this layer is to isolate the imaging array from the therapy array at 2 MHz without disturbing the 0.5-MHz ultrasound transmission. In this study, we first used a 1-D model including two lead zirconate titanate (PZT) layers separated by an isolation layer for intuitive understanding of the phenomena. After that, we optimized the acoustic impedance and thickness of the isolation layer by analyzing pulse propagation in a 2-D model by conducting a numerical simulation with commercially available software. The optimal acoustic impedance and thickness are 3 to 4 MRayl and ;B;/10, respectively. On the basis of the optimization, a prototype array transducer was fabricated, and the spatial resolutions of the Doppler images it obtained were found to be practically the same as those obtained through conventional imaging array transducers.
机译:描述了一种新的具有两个不同最佳频率的超声阵列换能器,该换能器设计用于基于多普勒成像的经颅超声溶栓治疗中的诊断和治疗整合。先前的研究表明,大约0.5和2 MHz的频率适用于声纳溶栓和多普勒成像。由于可用于经颅超声暴露的声窗很小,因此非常希望治疗超声和诊断超声都高效地通过相同的孔径。为了实现这种双频阵列换能器,我们提出了双房阵列,其具有用于成像和用于治疗的阵列,在两个阵列之间具有频率选择性隔离层。该层的功能是在2 MHz时将成像阵列与治疗阵列隔离开,而不会干扰0.5 MHz的超声波传输。在这项研究中,我们首先使用一维模型,该模型包括两层钛酸锆钛酸铅(PZT)层,这些层之间由隔离层隔开,以直观地了解现象。此后,我们通过使用商用软件进行数值模拟来分析二维模型中的脉冲传播,从而优化了隔离层的声阻抗和厚度。最佳声阻抗和厚度分别为3至4 MRayl和; B; / 10。在优化的基础上,制造了原型阵列换能器,并且发现其获得的多普勒图像的空间分辨率实际上与通过常规成像阵列换能器获得的空间分辨率相同。

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