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Thin ceramic PZT dual- and multi-frequency pMUT arrays for photoacoustic imaging

机译:用于光声成像的薄陶瓷 PZT 双频和多频 pMUT 阵列

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Miniaturized ultrasonic transducer arrays with multiple frequencies are key components in endoscopic photoacoustic imaging (PAI) systems to achieve high spatial resolution and large imaging depth for biomedical applications. In this article, we report on the development of ceramic thin-film PZT-based dual- and multi-frequency piezoelectric micromachined ultrasonic transducer (pMUT) arrays and the demonstration of their PAI applications. With chips sized 3.5 mm in length or 10 mm in diameter, square and ring-shaped pMUT arrays incorporating as many as 2520 pMUT elements and multiple frequencies ranging from 1 MHz to 8 MHz were developed for endoscopic PAI applications. Thin ceramic PZT with a thickness of 9 mu m was obtained by wafer bonding and chemical mechanical polishing (CMP) techniques and employed as the piezoelectric layer of the pMUT arrays, whose piezoelectric constant d(31) was measured to be as high as 140 pm/V. Benefiting from this high piezoelectric constant, the fabricated pMUT arrays exhibited high electromechanical coupling coefficients and large vibration displacements. In addition to electrical, mechanical, and acoustic characterization, PAI experiments with pencil leads embedded into an agar phantom were conducted with the fabricated dual- and multi-frequency pMUT arrays. Photoacoustic signals were successfully detected by pMUT elements with different frequencies and used to reconstruct single and fused photoacoustic images, which clearly demonstrated the advantages of using dual- and multi-frequency pMUT arrays to provide comprehensive photoacoustic images with high spatial resolution and large signal-to-noise ratio simultaneously.
机译:具有多个频率的小型化超声换能器阵列是内窥镜光声成像 (PAI) 系统的关键组件,可为生物医学应用实现高空间分辨率和大成像深度。在本文中,我们报告了基于PZT的陶瓷薄膜双频和多频压电微加工超声换能器(pMUT)阵列的开发及其PAI应用的演示。芯片长度为 3.5 mm,直径为 10 mm,方形和环形 pMUT 阵列包含多达 2520 个 pMUT 元件和 1 MHz 至 8 MHz 的多个频率范围,用于内窥镜 PAI 应用。采用晶圆键合和化学机械抛光(CMP)技术制备了厚度为9 μm的薄陶瓷PZT,并作为pMUT阵列的压电层,其压电常数d(31)高达140 pm/V。除了电学、机械学和声学表征外,还使用制备的双频和多频 pMUT 阵列进行了将铅笔芯嵌入琼脂模型的 PAI 实验。不同频率的pMUT元件成功检测了光声信号,并用于重建单频和融合光声图像,清楚地展示了使用双频和多频pMUT阵列同时提供高空间分辨率和大信噪比的综合光声图像的优势。

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