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MINIATURIZED ULTRASOUND TRANSDUCER COMPOSED OF A COMPOSITE OF MULTIPLE PIEZOELECTRIC STACKS

机译:由多个压电叠层组成的微型超声换能器

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This paper aims to develop a miniaturized ultrasound transducer for intravascular thrombolysis, which requires a transducer with high mechanical index (> 0.3) and a long focal distance (> 2.0 mm). To meet this need, a composite of a multi-pillar piezo stack (MPPS) transducer was designed and fabricated by using PZT-4, conductive epoxy, soft elastomer, and a metallic concave lens. The simulation results showed the predominant extensional mode at around 0.92 MHz. The -6 dB focal distance was elongated by 150% from that of the common single-pillar piezo stack (SPPS) transducer with the same aperture. The acoustic pressure was improved by 8.2 dB at the focal zone. Next, the experimental results showed the peak-to-negative pressure of 1.92 MPa under 120 V_(pp) input, which was sufficient to cause the inertial cavitation of microbubble contrast agents. The -6 dB focal distance reached up to 3.4 mm which was a significant improvement compared to the conventional SPPS transducer. The developed intravascular transducer will be employed for the microbubble-mediated ultrasound thrombolysis to reduce the treatment time.
机译:本文旨在开发一种用于血管内溶栓的小型超声换能器,该换能器需要具有高机械指数(> 0.3)和长焦距(> 2.0 mm)的换能器。为了满足这一需求,使用PZT-4,导电环氧树脂,软弹性体和金属凹透镜设计并制造了多柱压电叠层(MPPS)换能器的复合材料。仿真结果表明,主要的扩展模式在0.92 MHz附近。 -6 dB的焦距比具有相同孔径的普通单柱压电堆栈(SPPS)传感器的焦距延长了150%。聚焦区的声压提高了8.2 dB。接下来,实验结果表明,在120 V_(pp)输入下,峰负压为1.92 MPa,足以引起微泡造影剂的惯性空化。 -6 dB的焦距达到3.4 mm,与传统的SPPS换能器相比有显着改善。开发的血管内换能器将用于微泡介导的超声溶栓治疗,以减少治疗时间。

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