Gan X, Gu M
Optoelectronic Imaging Group, School of Communications and Informatics, Victoria University of Technology, P.O. Box 14428 MCMC, Victoria 8001, Australia.
Opt Lett. 1999 Jun 1;24(11):741-3. doi: 10.1364/ol.24.000741.
An effective point-spread function (EPSF) for microscopic imaging through turbid media is proposed and calculated. The EPSF incorporates the property of a microscope system as well as the scattering property of a turbid medium. We prove that the image of a thin object embedded in a turbid medium can be expressed by the convolution of the EPSF with an object function. With the help of the convolution relation, image modeling for 5, 000, 000 incident photons can be approximately 15 times faster than the direct Monte Carlo simulation method for a one-dimensional object and can be at least 2 orders of magnitude faster for a two-dimensional object.
提出并计算了一种用于通过浑浊介质进行微观成像的有效点扩散函数(EPSF)。该EPSF包含了显微镜系统的特性以及浑浊介质的散射特性。我们证明,嵌入浑浊介质中的薄物体的图像可以通过EPSF与物体函数的卷积来表示。借助卷积关系,对于一维物体,5000000个入射光子的图像建模速度比直接蒙特卡罗模拟方法快约15倍,对于二维物体,速度至少快2个数量级。