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All-optical highly sensitive broadband ultrasound sensor without any deformable parts for photoacoustic imaging

机译:全光学高灵敏度宽带超声传感器,无任何可变形部件,用于光声成像

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摘要

We present a novel akinetic optical ultrasound sensor, consisting of a rigid, fiber-coupled Fabry-Perot interferometer (FPI) with a central opening. The sensing principle relies exclusively on the detection of pressure-induced changes of the refractive index in the liquid located between the cavity mirrors. This enables resonance-free, inherently linear signal detection over a large bandwidth. We demonstrate that the sensor allows to realize exceedingly low noise equivalent pressure (NEP) values of 2 Pa over a 20 MHz measurement bandwidth, while maintaining a large full field of view of 2,7 mm x 1,3 mm as well as a flat frequency response. Imaging tests on phantoms and biological tissue show the suitability of the XARION-sensor for optical resolution photoacoustic microscopy (OR-PAM) applications. Transparent in axial direction, the sensor facilitates the implementation of highly sensitive fast-scanning reflection-mode OR-PAM setups, as well as easy integration with other imaging modalities such as confocal microscopy or OCT.
机译:我们提出了一种新型的动态光学超声传感器,该传感器由刚性,光纤耦合的Fabry-Perot干涉仪(FPI)组成,具有中心开口。感测原理仅依赖于检测位于腔镜之间的液体中的压力引起的折射率变化。这样可以在大带宽上实现无共振,固有的线性信号检测。我们证明,该传感器可以在20 MHz的测量带宽上实现2 Pa的极低噪声等效压力(NEP)值,同时保持2.7 mm x 1,3 mm的大全视野以及平坦的频率响应。对体模和生物组织的成像测试表明,XARION传感器适用于光学分辨率光声显微镜(OR-PAM)应用。该传感器轴向透明,有助于实现高灵敏度的快速扫描反射模式OR-PAM设置,并易于与其他成像模式(例如共聚焦显微镜或OCT)集成。

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