首页> 外文期刊>Journal of optics >Gas-coupled laser acoustic detection as a non-contact line detector for photoacoustic and ultrasound imaging
【24h】

Gas-coupled laser acoustic detection as a non-contact line detector for photoacoustic and ultrasound imaging

机译:气体耦合激光声学检测作为用于光声和超声成像的非接触式线检测器

获取原文
获取原文并翻译 | 示例
           

摘要

Conventional contacting transducers for ultrasonic wave detection are highly sensitive and tuned for real-time imaging with fixed array geometries. However, optical detection provides an alternative to contacting transducers when a small sensor footprint, a large frequency bandwidth, or non-contacting detection is required. Typical optical detection relies on a Doppler-shifted reflection of light from the target, but gas coupled-laser acoustic detection (GCLAD) provides an alternative optical detection method for photoacoustic (PA) and ultrasound imaging that does not involve surface reflectivity. Instead, GCLAD is a line-detector that measures the deflection of an optical beam propagating parallel to the sample, as the refractive index of the air near the sample is affected by particle displacement on the sample surface. We describe the underlying principles of GCLAD and derive a formula for quantifying the surface displacement from a remote GCLAD measurement. We discuss a design for removing the location-dependent displacement bias along the probe beam and a method for measuring the attenuation coefficient of the surrounding air. GCLAD results are used to quantify the surface displacement in a laser-ultrasound experiment, which shows 94% agreement to line-integrated data from a commercial laser vibrometer point detector. Finally, we demonstrate the feasibility of PA imaging of an artery-sized absorber using a detector 5.8 cm from a phantom surface.
机译:用于超声波检测的常规接触换能器具有很高的灵敏度,并经过调整,可用于具有固定阵列几何形状的实时成像。但是,当需要较小的传感器占用空间,较大的频率带宽或非接触式检测时,光学检测提供了一种替代接触式换能器的方法。典型的光学检测依赖于来自目标的光的多普勒频移反射,但是气体耦合激光声学检测(GCLAD)为光声(PA)和超声成像提供了一种不涉及表面反射率的替代光学检测方法。取而代之的是,GCLAD是一种线检测器,可测量平行于样品传播的光束的偏转,因为靠近样品的空气的折射率受样品表面上颗粒位移的影响。我们描述了GCLAD的基本原理,并从远程GCLAD测量中导出了用于量化表面位移的公式。我们讨论了一种用于消除沿探测光束的位置相关的位移偏差的设计以及一种用于测量周围空气的衰减系数的方法。 GCLAD结果在激光超声实验中用于量化表面位移,表明与来自商业激光测振仪点检测器的线积分数据有94%的一致性。最后,我们演示了使用距幻像表面5.8 cm的探测器对动脉大小的吸收体进行PA成像的可行性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号