Peres Chiara, Nardin Chiara, Yang Guang, Mammano Fabio
CNR Institute of Biochemistry and Cell Biology, 00015 Monterotondo, Rome, Italy.
Department of Physics and Astronomy "G. Galilei", University of Padova, 35131 Padova, Italy.
Biomed Opt Express. 2022 Feb 14;13(3):1410-1429. doi: 10.1364/BOE.444525. eCollection 2022 Mar 1.
Multimodal microscopy combines multiple non-linear techniques that take advantage of different optical processes to generate contrast and increase the amount of information that can be obtained from biological samples. However, the most advanced optical architectures are typically custom-made and often require on-site adjustment of optical components performed by trained personnel for optimal performance. Here, we describe a hybrid system we built based on a commercial upright microscope. We show that our multimodal imaging platform can be used to seamlessly perform two-photon STED, wavelength mixing and label-free microscopy in both and turbid samples. The system is stable and endowed with remote alignment hardware that ensures long-term operability also for non-expert users, using the alignment protocol described in this article and in the related material. This optical architecture is an important step forward towards a wider practical applicability of non-linear optics to bioimaging.
多模态显微镜结合了多种非线性技术,这些技术利用不同的光学过程来产生对比度,并增加从生物样本中可获得的信息量。然而,最先进的光学架构通常是定制的,并且通常需要由训练有素的人员在现场对光学组件进行调整以实现最佳性能。在此,我们描述了基于商用正置显微镜构建的混合系统。我们表明,我们的多模态成像平台可用于在透明和浑浊样本中无缝执行双光子受激发射损耗(STED)、波长混合和无标记显微镜成像。该系统稳定,并配备了远程对准硬件,通过本文及相关材料中描述的对准协议,即使对于非专业用户也能确保长期可操作性。这种光学架构是朝着非线性光学在生物成像中的更广泛实际应用迈出的重要一步。