National Taiwan University, Department of Electrical Engineering, Taipei, Taiwan.
J Biomed Opt. 2010 Jul-Aug;15(4):046012. doi: 10.1117/1.3469848.
Multiharmonic optical microscopy has been widely applied in biomedical research due to its unique capability to perform noninvasive studies of biomaterials. In this study, virtual biopsy based on back-propagating multiple optical harmonics, combining second and third harmonics, is applied in unfixed rat tympanic membrane. We show that third harmonic generation can provide morphologic information on the epithelial layers of rat tympanic membrane as well as radial collagen fibers in middle fibrous layers, and that second harmonic generation can provide information on both radial and circular collagen fibers in middle fibrous layers. Through third harmonic generation, the capillary and red blood cells in the middle fibrous layer are also noted. Additionally, the 3-D relationship to adjacent bony structures and spatial variations in thickness and curvature are obtained. Our study demonstrates the feasibility of using a noninvasive optical imaging system for comprehensive evaluation of the tympanic membrane.
多谐光学显微镜由于能够对生物材料进行非侵入性研究,因此在生物医学研究中得到了广泛的应用。在这项研究中,基于反向传播多个光学谐波(结合二次和三次谐波)的虚拟活组织检查被应用于未固定的大鼠鼓膜。我们表明,三次谐波产生可以提供大鼠鼓膜上皮层以及中层纤维中的径向胶原纤维的形态信息,而二次谐波产生可以提供中层纤维中的径向和环形胶原纤维的信息。通过三次谐波产生,还可以观察到中层纤维中的毛细血管和红细胞。此外,还获得了与相邻骨结构的三维关系以及厚度和曲率的空间变化。我们的研究表明,使用非侵入性光学成像系统对鼓膜进行全面评估是可行的。