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基于全光学散斑对比的光声信号检测用振动传感器。

All Optical Speckle Contrast-Based Vibration Sensor for Photoacoustic Signal Detection.

机构信息

Faculty of Engineering and the Nanotechnology Center, Bar Ilan University, Ramat Gan 5290002, Israel.

出版信息

Sensors (Basel). 2022 Apr 23;22(9):3250. doi: 10.3390/s22093250.

Abstract

Remote detection of photoacoustic signals is a well desired ability, enabling to perform advanced imaging in scenarios where contact is not possible. Various unique solutions have been suggested, including a camera-based speckle contrast photoacoustic detection. In this manuscript, a significant upgrade to the camera-based speckle contrast approach is presented and experimentally demonstrated. This solution is based on all-optical vibration sensing setup. The technique is based on spectral estimation of speckle pattern contrast and relies on several pre-developed works. First, it relies on the suggested application of speckle contrast to vibration sensing, and then on the realization of intensity pattern spectral manipulation, using a shearing interferometer. The method is evaluated and compared to traditional contrast estimation, and demonstrated in several applications in various vibration frequency band such as photoacoustic signal analysis and phonocardiographic heart sounds. The method is also applicable to measuring contrast changes due to a general speckle changing behavior, rather than surface vibration alone.

摘要

远程探测光声信号是一种理想的能力,可以在无法接触的情况下进行高级成像。已经提出了各种独特的解决方案,包括基于相机的散斑对比度光声检测。在本文中,提出并实验验证了一种基于相机的散斑对比度方法的重大升级。该解决方案基于全光学振动传感装置。该技术基于散斑图案对比度的光谱估计,并依赖于几个预先开发的工作。首先,它依赖于将散斑对比度应用于振动传感,然后依赖于使用剪切干涉仪实现强度图案光谱的操纵。该方法进行了评估,并与传统的对比度估计进行了比较,并在各种振动频率范围内的多个应用中进行了演示,例如光声信号分析和心音。该方法还适用于测量由于一般散斑变化行为而不是表面振动引起的对比度变化。

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