Tai Shih-Peng, Tsai Tsung-Han, Lee Wen-Jeng, Shieh Dar-Bin, Liao Yi-Hua, Huang Hsin-Yi, Zhang Kenneth, Liu Hsiang-Lin, Sun Chi-Kuang
Opt Express. 2005 Oct 3;13(20):8231-42. doi: 10.1364/opex.13.008231.
Harmonics-based optical microscopy has been widely applied in biomedical researches due to its noninvasiveness to the studied biomaterials. Due to momentum conservation consideration, most previous studies collect harmonics generation signals in a forward geometry, especially for third harmonic generation signals. However, the adopted forward transmission type geometry is not feasible for future clinical diagnosis. In this paper, first virtual biopsy based on backward propagating optical higher harmonics, combining second harmonic and third harmonic, is demonstrated in the fixed human skin specimens. In our study, third harmonic generation can provide morphologic information including the distribution of basal cells while second harmonic generation can provide distribution of collagen fibers in dermis. Therefore, this technique is ideal for future noninvasive in vivo skin disease examination without dye.
基于谐波的光学显微镜由于对所研究的生物材料具有非侵入性,已在生物医学研究中得到广泛应用。出于动量守恒的考虑,大多数先前的研究在前向几何结构中收集谐波产生信号,特别是对于三次谐波产生信号。然而,所采用的前向传输型几何结构对于未来的临床诊断是不可行的。在本文中,首次在固定的人体皮肤标本中展示了基于反向传播光学高次谐波(结合二次谐波和三次谐波)的虚拟活检。在我们的研究中,三次谐波产生可以提供包括基底细胞分布在内的形态学信息,而二次谐波产生可以提供真皮中胶原纤维的分布。因此,这项技术对于未来无需染色的非侵入性体内皮肤疾病检查是理想的。