论文标题
用于体内光场编码纳米成像的单模纤维
Single multimode fiber for in vivo light-field encoded nano-imaging
论文作者
论文摘要
超分辨率显微镜通常需要复杂且笨重的光学元件不适用于通过狭窄的通道进行原位成像。在这里,我们展示了体内光场纳米成像的单纤维多模纤维(MMF)内窥镜(小于250 $μm$),这称为空间频率跟踪适应性频率信号灯光光谱灯场编码的纳米内镜检查(稳定的Nano-Endoscoppy)(稳定的Nano-Endoscopy),以启用三二维(3d)sc。空间频率跟踪可提供高达$ 10^3 $ Hz障碍跟踪,可确保在各种条件下在长途MMF(最高200 m)中进行稳定成像。将全矢量调制和荧光发射差组合在一起,以两次提高成像信号噪声比,并改善对亚划分限制的250 nm($λ/3NA $)的分辨率。稳定的纳米内窥镜检查和白光内窥镜(WLE)被整合以实现管腔内的体内成像。这种高分辨率和强大的观察以微创的方式铺平了对疾病机制的更深入了解并弥合临床和生物学科学的方法。
Super-resolution microscopy normally requiring complex and cumbersome optics is not applicable for in situ imaging through a narrow channel. Here, we demonstrate single hair-thin multimode fiber (MMF) endoscope (less than 250 $μm$) for in vivo light-field nano-imaging, which is called spatial-frequency tracking adaptive beacon light-field encoded nano-endoscopy (STABLE nano-endoscopy) that enables three-dimensional (3D) subcellular-scale imaging. Spatial-frequency tracking provides up to $10^3$ Hz disorder tracking that ensures stable imaging in long-haul MMFs (up to 200 m) under various conditions. Full-vector modulation and fluorescence emission difference are combined to enhance the imaging signal-to-noise ratio two times and to improve the resolution to sub-diffraction-limited 250 nm ($λ/3NA$). STABLE nano-endoscopy and white-light endoscopy (WLE) are integrated to achieve cross-scale in vivo imaging inside the lumen. This high-resolution and robust observation in a minimally invasive manner paves the way to gain a deeper understanding of the disease mechanisms and to bridge clinical and biological sciences.