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首页> 外文期刊>Scientific reports. >Breaking the diffraction-limited resolution barrier in fiber-optical two-photon fluorescence endoscopy by an azimuthally-polarized beam
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Breaking the diffraction-limited resolution barrier in fiber-optical two-photon fluorescence endoscopy by an azimuthally-polarized beam

机译:方位角偏振光束打破了光纤双光子荧光内窥镜中的衍射极限分辨率障碍

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摘要

Although fiber-optical two-photon endoscopy has been recognized as a potential high-resolution diagnostic and therapeutic procedure in vivo , its resolution is limited by the optical diffraction nature to a few micrometers due to the low numerical aperture of an endoscopic objective. On the other hand, stimulated emission depletion (STED) achieved by a circularly-polarized vortex beam has been used to break the diffraction-limited resolution barrier in a bulky microscope. It has been a challenge to apply the STED principle to a fiber-optical two-photon endoscope as a circular polarization state cannot be maintained due to the birefringence of a fiber. Here, we demonstrate the first fiber-optical STED two-photon endoscope using an azimuthally-polarized beam directly generated from a double-clad fiber. As such, the diffraction-limited resolution barrier of fiber-optical two-photon endoscopy can be broken by a factor of three. Our new accomplishment has paved a robust way for high-resolution in vivo biomedical studies.
机译:尽管光纤二光子内窥镜已被认为是体内潜在的高分辨率诊断和治疗方法,但由于内窥镜物镜的数值孔径低,其分辨率受到光学衍射特性的限制,只有几微米。另一方面,圆偏振涡旋光束实现的受激发射损耗(STED)已用于打破大体积显微镜中的衍射极限分辨率障碍。将STED原理应用于光纤双光子内窥镜一直是一个挑战,因为由于光纤的双折射无法保持圆偏振状态。在这里,我们演示了第一台使用直接从双包层光纤产生的方位角偏振光束的光纤STED两光子内窥镜。这样,可以将光纤双光子内窥镜的衍射极限分辨率障碍提高三倍。我们的新成就为高分辨率的体内生物医学研究铺平了道路。

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