Batista Ana, Breunig Hans Georg, Uchugonova Aisada, Morgado António Miguel, König Karsten
Saarland University, Faculty of Physics and Mechatronics, Department of Biophotonics and Laser Technology, Campus A5.1, Saarbrücken 66123, GermanybUniversity of Coimbra, Faculty of Medicine, Institute for Biomedical Imaging and Life Sciences, Azinhaga San.
Saarland University, Faculty of Physics and Mechatronics, Department of Biophotonics and Laser Technology, Campus A5.1, Saarbrücken 66123, GermanycJenLab GmbH, Schillerstr. 1, Jena 07745, Germany.
J Biomed Opt. 2016 Mar;21(3):36002. doi: 10.1117/1.JBO.21.3.036002.
Five dimensional microscopy with a 12-fs laser scanning microscope based on spectrally resolved two-photon autofluorescence lifetime and second-harmonic generation (SHG) imaging was used to characterize all layers of the porcine cornea. This setup allowed the simultaneous excitation of both metabolic cofactors, NAD(P)H and flavins, and their discrimination based on their spectral emission properties and fluorescence decay characteristics. Furthermore, the architecture of the stromal collagen fibrils was assessed by SHG imaging in both forward and backward directions. Information on the metabolic state and the tissue architecture of the porcine cornea were obtained with subcellular resolution, and high temporal and spectral resolutions.
基于光谱分辨双光子自发荧光寿命和二次谐波产生(SHG)成像的12飞秒激光扫描显微镜进行的五维显微镜检查被用于表征猪角膜的所有层。这种设置允许同时激发两种代谢辅助因子NAD(P)H和黄素,并根据它们的光谱发射特性和荧光衰减特性对其进行区分。此外,通过向前和向后方向的SHG成像评估了基质胶原纤维的结构。以亚细胞分辨率以及高时间和光谱分辨率获得了猪角膜代谢状态和组织结构的信息。