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Development of Hydrostatic Annular Ultrasounds Transducers for Intravascular Sonoelastographic Shear Velocity Imaging

机译:静脉内超声剪切速度成像的静压环形超声传感器的研制

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The design, fabrication, and testing of hydrostatic annular ultrasounds transducers for intravascular sonoelastographic shear velocity for imaging is presented. By using dual element piezo rings with through-blood acoustic shear waves propagation, the miniaturized hydrostatic annular ultrasound transducer was developed. The annular array was designed and fabricated using two sets of different thickness piezo-rings embedded in steel rings with fine grooves of 250 μm wide separated by a 1 mm polymer spacers, and a light backing layer of Epo-Tek 301(Epoxy Tech., Inc., Billerica, MA). Epoxy was used for backing layers, and a flexible circuit was used for interconnecting the annuli with 75 Ohm coaxial cables. One array was tested, and the results were found to be in reasonable agreement with the numerical simulation. The highest measured total acoustic pressure for pulse-echo response and the maximum displacement of PZT rings in radial direction around 19.5 MHz for this transducer was 24 kPa and 8 nm, respectively.
机译:提出了用于血管内旋转剪切速度的静压环形超声换能器的设计,制造和测试。通过使用具有通血声剪切波传播的双元素压电环,开发了小型化静压环形超声换能器。使用两组不同的厚度压电环设计和制造环形阵列,其嵌入钢环中,具有由1mm的聚合物间隔物分离的250μm宽的细槽,以及EPO-TEK 301的轻背衬层(环氧技术。 Inc.,Billerica,MA)。环氧树脂用于背衬层,并且使用柔性电路与75欧姆同轴电缆互连。测试了一个阵列,并发现结果与数值模拟合理一致。用于脉冲回声响应的最高测量的总声压和径向中PZT环的最大位移约为该换能器的径向约19.5MHz为24kPa和8nm。

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