Guo Pengyi, Devaney Anthony J
Department of Electrical and Computer Engineering, Northeastern University, Boston, Massachusetts 02115, USA.
J Opt Soc Am A Opt Image Sci Vis. 2005 Nov;22(11):2338-47. doi: 10.1364/josaa.22.002338.
A recently developed inverse scattering algorithm [A. J. Devaney and M. Dennison, Inverse Probl., 19, 855 (2003) and M. Dennison and A. J. Devaney, Inverse Probl., 20, 1307 (2004)] is described and applied in a computer simulation study of optical diffraction tomography (ODT). The new algorithm is superior to standard ODT reconstruction algorithms, such as the filtered backpropagation algorithm, in applications employing a limited number of scattering experiments (the so-called limited-view case) and also in cases where multiple scattering occurs between the object being interrogated and the (known) background in which the object is embedded. The new algorithm is compared and contrasted with the filtered backpropagation algorithm in a computer simulation of ODT of weakly inhomogeneous cylindrical objects being interrogated in a limited number of scattering experiments employing incident plane waves. Our study has potential applications in biomedical imaging and tomographic microscopy.
介绍了一种最近开发的逆散射算法[A. J. 德瓦尼和M. 丹尼森,《逆问题》,19,855 (2003) 以及M. 丹尼森和A. J. 德瓦尼,《逆问题》,20,1307 (2004)],并将其应用于光学衍射层析成像(ODT)的计算机模拟研究中。在采用有限数量散射实验的应用中(即所谓的有限视角情况),以及在被探测物体与物体所嵌入的(已知)背景之间发生多次散射的情况下,这种新算法优于标准的ODT重建算法,如滤波反传播算法。在使用平面波入射的有限数量散射实验中对弱非均匀圆柱形物体进行ODT计算机模拟时,将这种新算法与滤波反传播算法进行了比较和对比。我们的研究在生物医学成像和断层显微镜方面具有潜在应用。