Center for Molecular Spectroscopy and Dynamics, Institute for Basic Science, Seoul, Republic of Korea.
Department of Physics, Korea University, Seoul, Republic of Korea.
Nat Commun. 2022 Aug 2;13(1):4469. doi: 10.1038/s41467-022-32114-5.
Ultrathin lensless fibre endoscopes offer minimally invasive investigation, but they mostly operate as a rigid type due to the need for prior calibration of a fibre probe. Furthermore, most implementations work in fluorescence mode rather than label-free imaging mode, making them unsuitable for general medical diagnosis. Herein, we report a fully flexible ultrathin fibre endoscope taking 3D holographic images of unstained tissues with 0.85-μm spatial resolution. Using a bare fibre bundle as thin as 200-μm diameter, we design a lensless Fourier holographic imaging configuration to selectively detect weak reflections from biological tissues, a critical step for label-free endoscopic reflectance imaging. A unique algorithm is developed for calibration-free holographic image reconstruction, allowing us to image through a narrow and curved passage regardless of fibre bending. We demonstrate endoscopic reflectance imaging of unstained rat intestine tissues that are completely invisible to conventional endoscopes. The proposed endoscope will expedite a more accurate and earlier diagnosis than before with minimal complications.
超薄无透镜光纤内窥镜提供微创检查,但由于需要对光纤探头进行预先校准,因此它们大多作为刚性类型工作。此外,大多数实现采用荧光模式而不是无标记成像模式工作,这使得它们不适合一般的医学诊断。在此,我们报告了一种完全灵活的超薄光纤内窥镜,可以对未染色的组织进行 3D 全息成像,空间分辨率为 0.85μm。使用薄如 200μm 直径的裸光纤束,我们设计了无透镜傅里叶全息成像配置,以选择性地检测生物组织的弱反射,这是无标记内窥镜反射成像的关键步骤。开发了一种用于无校准全息图像重建的独特算法,允许我们通过狭窄和弯曲的通道进行成像,而不管光纤弯曲如何。我们演示了对未经染色的大鼠肠组织的内窥镜反射成像,这些组织对传统内窥镜完全不可见。与传统内窥镜相比,所提出的内窥镜将以最小的并发症更快、更早地进行更准确的诊断。