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Resonant Optical Ultrasound Transducer (ROUT) Arrays for High Resolution Photoacoustic Imaging

机译:用于高分辨率光声成像的谐振光学超声换能器(漏斗)阵列

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Multi-dimensional, high frequency ultrasound arrays are extremely difficult to fabricate from conventional piezoelectrics. For over a decade, our lab has explored optical detection as an alternate technology for high frequency applications. We have developed several different types of acoustically coupled optical resonators to provide the sensitivity and bandwidth required for biomedical imaging. Waveguide and fiber lasers, thin Fabry-Perot etalons constructed from polymers, and thin microring resonators imprinted into polymers have all been used as ultrasound transducer arrays. Their performance rivals the theoretical conversion efficiency of piezoelectric devices but with bandwidths approaching 100 MHz, array element dimensions approaching 10 um, and no electrical interconnects. In this paper we present results on several resonant optical ultrasound transducer (ROUT) arrays, emphasizing their potential use in photoacoustic imaging. These results strongly suggest that a high resolution photoacoustic microscope can be constructed using a ROUT in a footprint appropriate for endoscopic and minimally invasive applications.
机译:多维高频超声阵列非常难以从传统压电的制造。十多年来,我们的实验室已经探索了光学检测作为高频应用的替代技术。我们开发了几种不同类型的声学耦合光学谐振器,以提供生物医学成像所需的灵敏度和带宽。波导和纤维激光器,由聚合物构成的薄的法布里 - 珀罗标准龙,并且印在聚合物中的薄微脉谐振器都被用作超声换能器阵列。它们的性能竞争于压电装置的理论转换效率,但带宽接近100 MHz,阵列元素尺寸接近10MUM,没有电互连。在本文中,我们在几个谐振光学超声换能器(钻头)阵列上呈现结果,强调其在光声成像中的潜在用途。这些结果强烈建议,可以使用适合于内窥镜和微创应用的占地面积中的溃疡构造高分辨率光声显微镜。

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