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ACOUSTO-OPTIC IMAGING TECHNIQUES FOR OPTICAL DIAGNOSIS

机译:光学诊断的声光成像技术

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The combination of light and ultrasound to measure optical properties through thick and highly scattering media is a tantalizing approach for emph{in vivo} imaging. This is partly due to the ballistic nature of ultrasound in biological tissue and thus the well-defined localization of the signal with a mm3 resolution. Optics can reveal echography-silent tumors by monitoring the wavelength of the laser source and thus measuring the optical absorption linked to oxy- or deoxy-hemoglobin. The coherent nature linked to the acousto-optic effect allows interferometric measurements. A difficulty arises from the speckle nature of the light to analyze, and two techniques with a high etendue are available at present in order to eliminate speckle blurring. They use either a CCD-camera that treats independently each grain of speckle, or a large area single detector and a photorefractive crystal that adapts the wavefront of the reference beam to the speckle output pattern.
机译:光和超声的结合以通过厚的和高度散射的介质来测量光学特性,是用于Emph {in vivo}成像的诱人方法。这部分是由于超声在生物组织中的弹道特性,因此具有毫米3分辨率的信号的明确定义的定位。光学器件可以通过监视激光源的波长,从而测量与氧合或脱氧血红蛋白有关的光吸收来揭示声像学无声的肿瘤。与声光效应相关的相干特性允许进行干涉测量。难以分析的光的散斑特性引起了目前的困难,为了消除散斑模糊,目前可以使用两种具有高集光率的技术。他们使用的是CCD相机(独立处理每个散斑),或者使用大面积的单个检测器和光折射晶体,使参考光束的波前适应散斑输出模式。

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