Husain Abdullah, Yerolatsitis Stephanos, Amezcua Correa Rodrigo, Han Kyu Young
Opt Express. 2024 Oct 7;32(21):37046-37058. doi: 10.1364/OE.533269.
We report a method for generating uniform, artifact-free total internal reflection fluorescence (TIRF) excitation via a photonic lantern. Our tapered waveguide, consisting of a multimode input and nine few-mode outputs, enables single-shot TIRF illumination from nine azimuthal directions simultaneously without the introduction of nonstationary devices. Utilizing the photonic lantern for multi-beam excitation provides a low-loss mechanism that supports a wide range of light sources, including high-coherence lasers and various wavelengths in the visible spectrum. Our excitation system also allows tuning of the TIRF penetration depth. The high-quality excitation produced by photonic lantern TIRF (PL-TIRF) enables unbiased imaging across the entire illumination field-of-view. The simplicity and robustness of our technique provides advantages over other TIRF approaches, which often have complicated setups with scanning devices or other impracticalities. In this paper we discuss the lantern design process, characterize its performance, and demonstrate flat-field super-resolution imaging and shadowless live-cell imaging using PL-TIRF.
我们报告了一种通过光子灯笼产生均匀、无伪影的全内反射荧光(TIRF)激发的方法。我们的锥形波导由一个多模输入和九个少模输出组成,能够同时从九个方位角方向进行单次TIRF照明,而无需引入非平稳设备。利用光子灯笼进行多光束激发提供了一种低损耗机制,可支持多种光源,包括高相干激光器和可见光谱中的各种波长。我们的激发系统还允许调节TIRF穿透深度。光子灯笼TIRF(PL-TIRF)产生的高质量激发能够在整个照明视场内进行无偏成像。我们技术的简单性和稳健性比其他TIRF方法具有优势,其他方法通常具有带有扫描设备的复杂设置或其他不切实际之处。在本文中,我们讨论了灯笼设计过程,表征了其性能,并展示了使用PL-TIRF的平场超分辨率成像和无阴影活细胞成像。