Payne Barry P, Venugopalan Vasan, Mikić Bora B, Nishioka Norman S
Massachusetts Institute of Technology, Department of Mechanical Engineering, Cambridge, Massachusetts 02139, USA.
J Biomed Opt. 2003 Apr;8(2):273-80. doi: 10.1117/1.1559727.
We introduce a minimally invasive technique for optoacoustic imaging of turbid media using optical interferometric detection of surface displacement produced by thermoelastic stress transients. The technique exploits endogenous or exogenous optical contrast of heterogeneous tissues and the low attenuation of stress wave propagation to localize and image subsurface absorbers in optically turbid media. We present a system that utilizes a time-resolved high-resolution interferometer capable of angstrom-level displacement resolution and nanosecond temporal resolution to detect subsurface blood vessels within model tissue phantoms and a human forearm in vivo.
我们介绍了一种用于混浊介质光声成像的微创技术,该技术利用光学干涉测量法检测热弹性应力瞬变产生的表面位移。该技术利用异质组织的内源性或外源性光学对比度以及应力波传播的低衰减,来定位和成像光学混浊介质中的地下吸收体。我们展示了一个系统,该系统利用具有埃级位移分辨率和纳秒时间分辨率的时间分辨高分辨率干涉仪,来检测模型组织体模和人体前臂体内的地下血管。