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A Low-Cost Miniature Histotripsy Transducer for Precision Tissue Ablation

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]
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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