Hubert Antoine, Panier Thomas, Migault Geoffrey, Trentesaux Hugo, Beaudou Benoît, Debrégeas Georges, Bormuth Volker
Sorbonne Université, CNRS, Institut de Biologie Paris-Seine (IBPS), Laboratoire Jean Perrin (LJP), Paris, France.
Sorbonne Université, CNRS, Institut de Biologie Paris-Seine (IBPS), Plateforme d'Imagerie, 75005, Paris, France.
Sci Rep. 2025 Jul 3;15(1):23760. doi: 10.1038/s41598-025-03107-3.
Two-photon light sheet microscopy offers great potential for a range of biological applications. Still, its practical implementation is impeded by the high cost of laser sources, the complexity of construction, and the challenges associated with adapting to existing microscope setups. Here, we release an open-source design that addresses these limitations by providing detailed building instructions for transforming a brightfield microscope into a versatile one- and two-photon light sheet system. Our design incorporates a specially designed broadband hollow core fiber, enabling the simultaneous utilization of visible laser alongside an expansive pulsed laser source from another setup. This integration allows for uncompromised image resolution and speed. Furthermore, the design reduces the complexity of construction, alignment, and overall cost, thereby significantly enhancing the accessibility of this technology ( https://github.com/LJPZebra/OLU ).
双光子光片显微镜在一系列生物学应用中具有巨大潜力。然而,其实际应用受到激光源成本高昂、构造复杂以及与现有显微镜设置适配相关挑战的阻碍。在此,我们发布一种开源设计,通过提供将明场显微镜转变为多功能单光子和双光子光片系统的详细构建说明来解决这些限制。我们的设计纳入了一种特殊设计的宽带空心光纤,能够同时利用可见光激光以及来自另一设置的宽脉冲激光源。这种整合实现了无损的图像分辨率和速度。此外,该设计降低了构造、对准的复杂性以及总体成本,从而显著提高了这项技术的可及性(https://github.com/LJPZebra/OLU)。