Bhawalkar J D, Swiatkiewicz J, Pan S J, Samarabandu J K, Liou W S, He G S, Berezney R, Cheng P C, Prasad P N
Department of Chemistry, State University of New York at Buffalo 14260, USA.
Scanning. 1996 Nov;18(8):562-6. doi: 10.1002/sca.4950180805.
Three-dimensional confocal imaging of polymer samples was achieved by the use of two-photon excited fluorescence in both positive and negative contrast modes. The fluorophore was a new and highly efficient two-photon induced upconverter, resulting in improved signal strength at low pumping power. Because of the relatively long wavelength of the excitation source (798 nm from a mode-locked Ti:Sapphire laser), this technique shows a larger penetration depth into the samples than provided by conventional single-photon fluorescence confocal microscopy. Single-photon and two-photon images of the same area of each sample show significant differences. The results suggest the possibility of using two-photon confocal microscopy, in conjunction with highly efficient fluorophores, as a tool to study the surface, interface, and fracture in material science applications.
通过在正、负对比度模式下使用双光子激发荧光实现了聚合物样品的三维共聚焦成像。荧光团是一种新型高效的双光子诱导上转换剂,在低泵浦功率下可提高信号强度。由于激发源的波长相对较长(锁模钛宝石激光器发出的798nm),与传统的单光子荧光共聚焦显微镜相比,该技术在样品中的穿透深度更大。每个样品相同区域的单光子和双光子图像显示出显著差异。结果表明,双光子共聚焦显微镜结合高效荧光团,有可能作为一种工具用于材料科学应用中研究表面、界面和断裂。