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基于 128 单元弛豫体阵列的 30MHz、3D 成像、前向微型内窥镜。

A 30-MHz, 3-D Imaging, Forward-Looking Miniature Endoscope Based on a 128-Element Relaxor Array.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Apr;68(4):1261-1271. doi: 10.1109/TUFFC.2020.3027907. Epub 2021 Mar 26.

Abstract

This work describes the design, fabrication, and characterization of a 128-element crossed electrode array in a miniature endoscopic form factor for real-time 3-D imaging. Crossed electrode arrays address some of the key challenges surrounding probe fabrication for 3-D ultrasound imaging by reducing the number of elements required (2N compared with N). However, there remain practical challenges in packaging a high-frequency crossed electrode array into an endoscopic form factor. A process has been developed that uses a thinly diced strip of flex circuit to bring the back-side connections to common bond surface, which allows the final size of the endoscope to measure only [Formula: see text] mm. An electrostrictive ceramic composite design was developed for the crossed electrode array. A laser dicing system was used to cut the 1-3 composite as well as etch the array electrode pattern. A single quarter wavelength Parylene matching layer made was vacuum deposited to finish the array. The electrical impedance magnitude of array elements on resonance was measured to be 49 Ω with a phase angle of -55.5°. The finished array elements produced pulses with -6-dB two-way bandwidth of 60% with a 34-MHz center frequency. The average measured electrical crosstalk on the nearest neighboring element and next to nearest neighboring element was -37 and -29 dB, respectively. One- and two-way pulse measurements were completed to confirm the pulse polarity and fast switching speed. Preliminary 3-D images were generated of a wire phantom using the previously described simultaneous azimuth and Fresnel elevation (SAFE) compounding imaging technique.

摘要

这项工作描述了一种 128 个交叉电极阵列的设计、制造和特性,该阵列采用微型内窥镜形式因子,用于实时 3D 成像。交叉电极阵列通过减少所需元件的数量(与 N 相比为 2N),解决了 3D 超声成像探头制造的一些关键挑战。然而,在将高频交叉电极阵列封装到内窥镜形式因子中仍然存在实际挑战。已经开发出一种工艺,该工艺使用薄的柔性电路条将背面连接带到公共键合表面,这使得内窥镜的最终尺寸仅为 [Formula: see text] 毫米。已经为交叉电极阵列开发了电致伸缩陶瓷复合材料设计。使用激光划片系统切割 1-3 复合材料并刻蚀阵列电极图案。制作了一个单四分之一波长的聚对二甲苯匹配层,通过真空沉积完成阵列。在谐振时测量的阵列元件的电阻抗幅度为 49 Ω,相位角为-55.5°。成品阵列元件产生的脉冲在 34MHz 中心频率下具有 60%的-6dB 双向带宽,为 60%。测量到最近邻和次近邻元件的平均电串扰分别为-37dB 和-29dB。完成了单向和双向脉冲测量,以确认脉冲极性和快速切换速度。使用先前描述的同时方位和菲涅耳仰角(SAFE)复合成像技术,对金属丝体模进行了初步的 3D 成像。

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