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A transparent broadband ultrasonic detector based on an optical micro-ring resonator for photoacoustic microscopy

机译:一种基于光学微环谐振器的透明宽带超声波探测器,用于光声显微镜

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Photoacoustic microscopy (PAM) does not rely on contrast agent to image the optical absorption contrast in biological tissue. It is uniquely suited for measuring several tissue physiological parameters, such as hemoglobin oxygen saturation, that would otherwise remain challenging. Researchers are designing new clinical diagnostic tools and multimodal microscopic systems around PAM to fully unleash its potential. However, the sizeable and opaque piezoelectric ultrasonic detectors commonly used in PAM impose a serious constraint. Our solution is a coverslip-style optically transparent ultrasound detector based on a polymeric optical micro-ring resonator (MRR) with a total thickness of 250?μm. It enables highly-sensitive ultrasound detection over a wide receiving angle with a bandwidth of 140?MHz, which corresponds to a photoacoustic saturation limit of 287?cm?1, at an estimated noise-equivalent pressure (NEP) of 6.8?Pa. We also established a theoretical framework for designing and optimizing the MRR for PAM.
机译:光声显微镜(PAM)不依靠造影剂来成像生物组织中的光吸收对比度。它特别适用于测量多个组织生理参数,例如血红蛋白氧饱和度,否则这些参数将仍然具有挑战性。研究人员正在围绕PAM设计新的临床诊断工具和多峰显微镜系统,以充分释放其潜力。但是,PAM中通常使用的尺寸较大且不透明的压电超声检测器会带来严重的限制。我们的解决方案是一种盖玻片式光学透明超声波探测器,该探测器基于聚合物光学微环谐振器(MRR),总厚度为250μm。在估计的噪声当量压力(NEP)下,它可以在140?MHz的带宽,对应于287?cm ?1 的光声饱和极限的宽接收角上进行高灵敏度的超声波检测。 )6.8?Pa。我们还为设计和优化PAM的MRR建立了理论框架。

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