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3D-resolved fluorescence and phosphorescence lifetime imaging using temporal focusing wide-field two-photon excitation

机译:使用时间聚焦广域双光子激发的3D分辨荧光和磷光寿命成像

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摘要

Fluorescence and phosphorescence lifetime imaging are powerful techniques for studying intracellular protein interactions and for diagnosing tissue pathophysiology. While lifetime-resolved microscopy has long been in the repertoire of the biophotonics community, current implementations fall short in terms of simultaneously providing 3D resolution, high throughput, and good tissue penetration. This report describes a new highly efficient lifetime-resolved imaging method that combines temporal focusing wide-field multiphoton excitation and simultaneous acquisition of lifetime information in frequency domain using a nanosecond gated imager from a 3D-resolved plane. This approach is scalable allowing fast volumetric imaging limited only by the available laser peak power. The accuracy and performance of the proposed method is demonstrated in several imaging studies important for understanding peripheral nerve regeneration processes. Most importantly, the parallelism of this approach may enhance the imaging speed of long lifetime processes such as phosphorescence by several orders of magnitude.
机译:荧光和磷光寿命成像是研究细胞内蛋白质相互作用和诊断组织病理生理学的强大技术。尽管终身解析显微镜在生物光子学界已久,但当前的实现方式在同时提供3D分辨率,高通量和良好的组织穿透性方面还不够。这份报告描述了一种新型的高效寿命分辨成像方法,该方法结合了时间聚焦广域多光子激发和使用纳秒级选通成像器从3D分辨平面同时获取频域中的寿命信息。这种方法是可扩展的,允许快速体积成像仅受可用的激光峰值功率限制。几种影像学研究证明了所提出方法的准确性和性能,对于理解周围神经再生过程很重要。最重要的是,这种方法的并行性可以将长寿命过程(例如磷光)的成像速度提高几个数量级。

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