Zakharov Pavel, Völker Andreas, Buck Alfred, Weber Bruno, Scheffold Frank
Department of Physics, University of Fribourg, Fribourg, Switzerland.
Opt Lett. 2006 Dec 1;31(23):3465-7. doi: 10.1364/ol.31.003465.
We have analyzed the image formation and dynamic properties in laser speckle imaging (LSI) both experimentally and with Monte Carlo simulation. We show for the case of a liquid inclusion that the spatial resolution and the signal itself are both significantly affected by scattering from the turbid environment. Multiple scattering leads to blurring of the dynamic inhomogeneity as detected by LSI. The presence of a nonfluctuating component of scattered light results in the significant increase in the measured image contrast and complicates the estimation of the relaxation time. We present a refined processing scheme that allows a correct estimation of the relaxation time from LSI data.
我们通过实验和蒙特卡罗模拟分析了激光散斑成像(LSI)中的图像形成和动态特性。对于液体夹杂物的情况,我们表明空间分辨率和信号本身都受到来自浑浊环境散射的显著影响。多次散射导致LSI检测到的动态不均匀性模糊。散射光中非波动成分的存在导致测量图像对比度显著增加,并使弛豫时间的估计变得复杂。我们提出了一种改进的处理方案,该方案能够从LSI数据中正确估计弛豫时间。