Optics and Photonics Research Center, Gleb Wataghin Institute of Physics, State University of Campinas (UNICAMP), Departamento de Eletrônica Quôntica, Campinas, São Paulo. Brazil.
Microsc Res Tech. 2012 Oct;75(10):1383-94. doi: 10.1002/jemt.22078. Epub 2012 May 31.
In this work, we proposed and built a multimodal optical setup that extends a commercially available confocal microscope (Olympus VF300) to include nonlinear second harmonic generation (SHG) and third harmonic generation (THG) optical (NLO) microscopy and fluorescence lifetime imaging microscopy (FLIM). We explored all the flexibility offered by this commercial confocal microscope to include the nonlinear microscopy capabilities. The setup allows image acquisition with confocal, brightfield, NLO/multiphoton and FLIM imaging. Simultaneously, two-photon excited fluorescence (TPEF) and SHG are well established in the biomedical imaging area, because one can use the same ultrafast laser and detectors set to acquire both signals simultaneously. Because the integration with FLIM requires a separated modulus, there are fewer reports of TPEF+SHG+FLIM in the literature. The lack of reports of a TPEF+SHG+THG+FLIM system is mainly due to difficulties with THG because the present NLO laser sources generate THG in an UV wavelength range incompatible with microscope optics. In this article, we report the development of an easy-to-operate platform capable to perform two-photon fluorescence (TPFE), SHG, THG, and FLIM using a single 80 MHz femtosecond Ti:sapphire laser source. We described the modifications over the confocal system necessary to implement this integration and verified the presence of SHG and THG signals by several physical evidences. Finally, we demonstrated the use of this integrated system by acquiring images of vegetables and epithelial cancer biological samples.
在这项工作中,我们提出并建立了一种多模态光学装置,该装置扩展了商用共聚焦显微镜(Olympus VF300),包括非线性二次谐波产生(SHG)和三次谐波产生(THG)光学(NLO)显微镜和荧光寿命成像显微镜(FLIM)。我们探索了这种商用共聚焦显微镜所提供的所有灵活性,以包括非线性显微镜功能。该装置允许进行共焦、明场、NLO/多光子和 FLIM 成像的图像采集。同时,双光子激发荧光(TPEF)和 SHG 在生物医学成像领域已经得到了很好的应用,因为可以使用相同的超快激光器和探测器同时获取这两种信号。由于与 FLIM 的集成需要分离的模数,因此文献中关于 TPEF+SHG+FLIM 的报道较少。缺乏 TPEF+SHG+THG+FLIM 系统的报告主要是由于 THG 存在困难,因为目前的 NLO 激光源在与显微镜光学不兼容的紫外波长范围内产生 THG。在本文中,我们报告了一种易于操作的平台的开发,该平台能够使用单个 80MHz 飞秒钛宝石激光器同时进行双光子荧光(TPFE)、SHG、THG 和 FLIM 。我们描述了为实现这种集成而对共聚焦系统进行的修改,并通过几种物理证据验证了 SHG 和 THG 信号的存在。最后,我们通过获取蔬菜和上皮癌细胞生物样本的图像,展示了该集成系统的使用。