Alfano R R, Demos S G, Galland P, Gayen S K, Guo Y, Ho P P, Liang X, Liu F, Wang L, Wang Q Z, Wang W B
New York State Center for Advanced Technology for Ultrafast Photonic Materials and Applications, Physics Department, City College and Graduate School, City University of New York 10031, USA.
Ann N Y Acad Sci. 1998 Feb 9;838:14-28. doi: 10.1111/j.1749-6632.1998.tb08184.x.
In this article, we have presented an overview of emerging novel techniques for early-light transillumination imaging as well as nonlinear optical tomography of body organs. The use of light for probing and imaging biomedical media offers the promise for development of safe, noninvasive, and inexpensive clinical imaging modalities with diagnostic ability. The strong scattering of light by biological tissues buries the shadowgram formed by forward-propatating image-bearing photons in the background noise of multiple-scattered light. Several methods for extraction of image-bearing light that capitalize on spatial, temporal and polarization characteristics of transmitted light are reviewed. More recently emerging nonlinear-optical histopathology methods for imaging subsurface structures of tissues in terms of its local spatial symmetry and molecular content are introduced. The progress made so far indicates that some of these techniques are apt to make a transition from laboratory to useful clinical modalities.
在本文中,我们概述了用于早期光透射成像以及人体器官非线性光学断层扫描的新兴新技术。利用光对生物医学介质进行探测和成像,有望开发出具有诊断能力的安全、无创且廉价的临床成像模式。生物组织对光的强烈散射将由向前传播的携带图像光子形成的阴影图掩埋在多次散射光的背景噪声中。本文回顾了几种利用透射光的空间、时间和偏振特性来提取携带图像光的方法。最近还介绍了新兴的非线性光学组织病理学方法,用于根据组织的局部空间对称性和分子含量对其亚表面结构进行成像。目前所取得的进展表明,其中一些技术易于从实验室过渡到实用的临床模式。