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Improving multiphoton STED nanoscopy with Separation of Photons by Lifetime Tuning (SPLIT)

机译:通过终生调谐(SPLIT)分离光子来改善多光子STED纳米技术

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Stimulated emission depletion (STED) microscopy is a powerful bio-imaging technique since it provides molecular spatial resolution whilst preserving the most important assets of fluorescence microscopy. When combined with two-photon excitation (2PE) microscopy (2PE-STED), the sub-diffraction imaging ability of STED microscopy can be achieved also on thick biological samples. The most straightforward implementation of 2PE-STED microscopy is obtained by introducing a STED beam operating in continuous wave (CW) into a conventional Ti:Sapphire based 2PE microscope (2PE-CW-STED). In this implementation, an effective resolution enhancement is mainly obtained implementing a time-gated detection scheme, which however can drastically reduce the signal-to-noise/background ratio of the final image. Herein, we combine the lifetime tuning (SPLIT) approach with 2PE-CW-STED to overcome this limitation. The SPLIT approach is employed to discard fluorescence photons lacking super-resolution information, by means of a pixel-by-pixel phasor approach. Combining the SPLIT approach with image deconvolution further optimizes the signal-to-noise/background ratio.
机译:激发发射耗尽(STED)显微镜是一种强大的生物成像技术,因为它提供了分子空间分辨率,同时保留了荧光显微镜最重要的资产。当与双光子激发(2PE)显微镜(2PE-STED)结合使用时,也可以在厚的生物样品上实现STED显微镜的亚衍射成像能力。通过将以连续波(CW)工作的STED光束引入传统的基于Ti:Sapphire的2PE显微镜(2PE-CW-STED)中,可以实现2PE-STED显微镜的最直接实现。在这种实施方式中,主要通过实施时间门控检测方案来获得有效的分辨率增强,但是该方案可以大大降低最终图像的信噪比/背景比。在本文中,我们将寿命调整(SPLIT)方法与2PE-CW-STED相结合以克服此限制。 SPLIT方法用于通过逐像素相量方法丢弃缺少超分辨率信息的荧光光子。将SPLIT方法与图像去卷积相结合,可以进一步优化信噪比/背景比。

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