材料科学
传感器
帕利烯
光学
烧蚀
镜头(地质)
插入损耗
超声波传感器
光电子学
生物医学工程
声学
复合材料
航空航天工程
工程类
聚合物
物理
医学
作者
Jeffrey Woodacre,Thomas Landry,Jeremy A. Brown
出处
期刊:IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control
[Institute of Electrical and Electronics Engineers]
日期:2018-09-12
卷期号:65 (11): 2131-2140
被引量:23
标识
DOI:10.1109/tuffc.2018.2869689
摘要
A miniature, 10 mm aperture histotripsy transducer with an f-number of 0.7 was fabricated using an elliptically shaped aluminum lens, which was epoxy-bonded to an air-backed 5.0 MHz, PTZ-5A, 1-3 dice-and-fill piezoelectric composite, and the lens coupled to water using a quarter-wavelength matching layer of Parylene-C. A Krimholtz-Leedom-Matthaei model of the device and curved lens was developed. The epoxy layer resulted in an increased power output at 6.8 MHz compared to the 5 MHz composite design. Cavitation was observed in water by driving the composite with a 173 V single-cycle, unipolar 6.8 MHz pulse at a pulse repetition frequency of 50 Hz, and a bubble cloud 264 μm long by 124 μm wide was measured. A coregistered imaging and ablation device was also fabricated and characterized. The coregistered device was modified to include a 4 mm×4 mm square hole through the center, allowing access for a high-frequency imaging array, and both imaging and ablation are demonstrated in cerebral tissue with this device. Radial -3 dB beam widths were measured as 0.145 and 0.116 mm, and axial -3 dB depths of field were 0.698 and 0.752 mm for the noncoregistered and coregistered transducers, respectively. Total material cost for the transducer and pulser board is below $200 USD.
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