OPTICS & OPTOELECTRONIC TECHNOLOGY, Volume. 23, Issue 2, 62(2025)
Experimental Study of Scanless and Lensless Endoscopic Imaging With Fiber Bundles
[1] [1] de Sivry-Houle MP, Beaudoin SB, Brais-Brunet S, et al. All-fiber few-mode optical coherence tomography using a modally-specific photonic lantern[J]. Biomed. Opt. Express, 2021, 12(9):5704-5719.
[2] [2] Psomadakis CE, Marghoob N, Bleicher B, et al. Optical coherence tomography[J]. Clinics in Dermatology, 2021, 39(4):624-634.
[3] [3] Tang S, Jung W, McCormick D, et al. Design and implementation of fiber-based multiphoton endoscopy with microelectromechanical systems scanning[J]. Journal of biomedical optics, 2009, 14(3):034005-034005-034007.
[4] [4] Rivera DR, Brown CM, Ouzounov DG, et al. Compact and flexible raster scanning multiphoton endoscope capable of imaging unstained tissue[J]. Proceedings of the National Academy of Sciences, 2011, 108(43):17598-17603.
[5] [5] Wang TD, Mandella MJ, Contag CH, et al. Dual-axis confocal microscope for high-resolution in vivo imaging[J]. Opt. Lett. , 2003, 28(6):414-416.
[6] [6] Pilonis ND, Januszewicz W, di Pietro M. Confocal laser endomicroscopy in gastro-intestinal endoscopy:technical aspects and clinical applications[J]. Translational Gastroenterology and Hepatology, 2022, 7:7.
[7] [7] Li G, Lee M, Chang T-S, et al. Wide-field endoscope accessory for multiplexed fluorescence imaging[J]. Scientific Reports, 2023, 13(1):19527.
[9] [9] Xie T, Mukai D, Guo S, et al. Fiber-optic-bundle-based optical coherence tomography[J]. Opt. Lett., 2005, 30(14):1803-1805.
[10] [10] Hughes M, Chang TP, Yang G-Z. Fiber bundle endocytoscopy[J]. Biomed. Opt. Express, 2013, 4(12):2781-2794.
[11] [11] Oh G, Chung E, Yun SH. Optical fibers for high-resolution in vivo microendoscopic fluorescence imaging[J]. Optical Fiber Technology, 2013, 19(6):760-771.
[12] [12] Wurster LM, Ginner L, Kumar A, et al. Endoscopic optical coherence tomography with a flexible fiber bundle[J]. Journal of Biomedical Optics, 2018, 23(6):066001.
[13] [13] Kuikas V, Werner MP, Schmitz-Rode T, et al. Two-photon endoscopy:State of the art and perspectives[J]. Molecular Imaging and Biology, 2021, 25(1):3-17.
[14] [14] Bijoch , Wodkowska U, Kasztelanic R, et al. Novel design and application of High-NA fiber imaging bundles for in vivo brain imaging with two-photon scanning fluorescence microscopy[J]. ACS Applied Materials & Interfaces, 2023, 15(10):12831-12841.
[15] [15] Porat A, Andresen ER, Rigneault H, et al. Widefield lensless imaging through a fiber bundle via speckle correlations[J]. Opt. Express, 2016, 24(15):16835-16855.
[17] [17] Robert K, Elias S, David FO-G, et al. Ultra-thin 3D lensless fiber endoscopy using diffractive optical elements and deep neural networks[J]. Light:Advanced Manufacturing, 2021, 2(4):415-424.
[18] [18] Sanders TM, Lamb C, Putrino G, et al. Method for increasing the core count and area of high density optical fiber bundles[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2020, 26(4):1-8.
[19] [19] Steelman ZA, Kim S, Jelly ET, et al. Comparison of imaging fiber bundles for coherence-domain imaging[J]. Appl. Opt. , 2018, 57(6):1455-1462.
Get Citation
Copy Citation Text
CUI Zhong-ming, YANG Hao-ran, WU Zhuang, SONG Zi-qi, WU Jin. Experimental Study of Scanless and Lensless Endoscopic Imaging With Fiber Bundles[J]. OPTICS & OPTOELECTRONIC TECHNOLOGY, 2025, 23(2): 62