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Lithium niobate-based transparent ultrasound transducers for photoacoustic imaging

机译:基于铌酸锂的透明超声换能器,用于光声成像

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This Letter demonstrates lithium niobate (LiNbO3)-based transparent ultrasound transducers (TUTs) for photoacoustic imaging applications. The TUTs were fabricated by coating the top and bottom surfaces of a 0.25 mm thick LiNbO3 wafer with transparent indium-tin-oxide (ITO) electrodes. The resulting transducers showed similar to 80% optical transparency in the wavelength range of 690-970 nm. The TUTs had a resonant frequency of 14.5 MHz and similar to 70% photoacoustic bandwidth. The versatility of the TUT approach is demonstrated by introducing two different transparent photoacoustic imaging (PAI) geometries. In one method, which suits endoscopy applications, an optical fiber of a laser diode is directly fixed on the backside of a 2.5 mm diameter TUT, and the fiber-TUT device is raster scanned to form 3D photoacoustic images. In the second method, which suits high-throughput applications, a free-space optical-only raster scanning of the laser fiber across a 1 cm x 1 cm planar TUT yielded 3D photoacoustic images. The proposed TUT approach is low in cost, easy to manufacture, compatible with conventional clinical ultrasound electronics, and scalable for different configurations, including 2D TUT arrays to achieve real-time 3D high-throughput PAI. (C) 2019 Optical Society of America
机译:这封信演示了铌酸锂(LINBO3)基础的透明超声传感器(TUTS),用于光声成像应用。通过用透明铟 - 锡氧化物(ITO)电极涂覆0.25mm厚的LINBO3晶片的顶部和底表面来制造TUT。所得到的换能器显示出690-970nm波长范围内的80%光学透明度。 TUTS具有14.5MHz的共振频率,与70%光声带宽相似。通过引入两个不同的透明光声成像(PAI)几何形状来证明TUT方法的多功能性。在适用于内窥镜检查的一种方法中,激光二极管的光纤直接固定在2.5mm直径Tut的背面上,光纤TUT器件是栅格扫描以形成3D光声图像。在适用于高吞吐量应用的第二种方法中,在1cm×1cm平面TUT上的激光光纤的自由空间光学光栅扫描产生3D光声图像。所提出的TUT方法成本低,易于制造,与传统的临床超声电子设备兼容,并为不同的配置进行缩放,包括2D TUT阵列,以实现实时3D高吞吐量PAI。 (c)2019年光学学会

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