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A 20-40 MHz Ultrasound Transducer for Intravascular Harmonic Imaging

机译:用于血管内谐波成像的20-40 MHz超声换能器

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Recent studies have suggested the feasibility of tissue harmonic imaging (THI) with intravascular ultrasound (IVUS), This paper describes the design, fabrication and characterization of a piezo-electric transducer optimized for tissue harmonic IVUS. Ideally, such a transducer should efficiently transmit a short acoustic pulse at the fundamental transmission frequency and should be sensitive to its second harmonic echo, for which we have chosen 20 MHz and 40 MHz, respectively. The intravascular application limits the transducer dimensions to 0.75 mm by 1 mm. The transducer comprises of a single piezoelectric layer design with additional passive layers for tuning and efficiency improvement, and the Krimholtz-Leedom-Matthaei (KLM) model was used to find iteratively optimal material properties of the different layers. Based on the optimized design a prototype of the transducer was built. The transducer was characterized by water-tank hydrophone measurements and pulse-echo measurements. These measurements showed the transducer to have two frequency bands around 20 MHz and 40 MHz with -6dB fractional bandwidths of 30 % and 25 %, and round-trip insertion losses of-19 dB and -34 dB, respectively.
机译:最近的研究表明组织谐波成像(THI)与血管内超声(IVUS)的可行性,本文描述了一种用于组织谐波IVUS优化的压电换能器的设计,制造和表征。理想情况下,这种换能器应该有效地传输以基本发送频率短声脉冲,并应到其第二谐波回波,为此我们分别选取20兆赫和40兆赫,敏感。的血管内应用1毫米限制了换能器的尺寸至0.75mm。单个压电层设计用于调谐和效率的提高,并且Krimholtz-利多姆-马特哈伊(KLM)模型附加的无源层的换能器包括被用来找到不同层的迭代最佳材料特性。基于优化设计的换能器的原型被建立。所述换能器的特征是水的水箱水听器测量和脉冲回波测量。这些测量结果表明所述换能器为具有大约20MHz的两个频带和40MHz为30%和25%的-6dB分数带宽和dB和-34 dB的,分别的-19往返插入损耗。

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