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Miniaturized Sub-Megahertz Focused Ultrasound Transducer Composed of Multilayer Hard PZT Ceramics

机译:多层硬质PZT陶瓷组成的小型亚兆赫聚焦超声换能器

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Catheter-directed ultrasound transducer enables efficient delivery of ultrasound energy to targeted vessel lumens. For intravascular therapies, such as sonothrombolysis, a small size (<;8 Fr.), low frequency (<;3 MHz) transducer, particularly in sub-megahertz frequency range is preferable to enhance cavitation effects. Our previous studies demonstrated that the forward-looking multi-layer stack of soft PZT ceramic (PZT-5A) can generate moderate acoustic output to induce inertial cavitation of microbubble contrast agent (MCA). In this study, we aim to enhancing the transmitting power intensity by adopting hard PZT ceramic (PZT-4) as an active piezo material. In addition, a metallic concave lens was designed to focus ultrasound energy with an improved focal gain. The electrical and acoustic characteristics of the new transducer were analyzed through finite element analysis (FEA). The performance of the improved model was validated by experimental characterizations. As a result, the peak-negative-pressure reaches up to 2.4 MPa for 120 Vpp excitation, which is about 5.5 dB greater than that of the reference.
机译:导管导向的超声换能器能够将超声能量有效地传递到目标血管腔。对于血管内治疗,例如声纳溶栓,较小的尺寸(<; 8 Fr.),低频(<; 3 MHz)换能器,特别是在亚兆赫兹频率范围内,可增强空化效果。我们以前的研究表明,前瞻性的多层软质PZT陶瓷叠层(PZT-5A)可以产生适度的声音输出,从而引起微泡造影剂(MCA)的惯性空化。在这项研究中,我们旨在通过采用硬质PZT陶瓷(PZT-4)作为活性压电材料来提高发射功率强度。此外,还设计了一种金属凹透镜,用于聚焦超声能量并提高聚焦增益。通过有限元分析(FEA)分析了新换能器的电学和声学特性。通过实验表征验证了改进模型的性能。结果,在120 V时,峰值负压高达2.4 MPa pp 激励,比参考值大约5.5 dB。

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