• Acta Photonica Sinica
  • Vol. 51, Issue 8, 0851508 (2022)
Xueli CHEN, Xinyu WANG, Tianyu YAN, Qi ZENG, Xinyi XU, and Hui XIE*
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3788/gzxb20225108.0851508 Cite this Article
    Xueli CHEN, Xinyu WANG, Tianyu YAN, Qi ZENG, Xinyi XU, Hui XIE. Harnessing the Power of Bessel Beam for Biomedical Microscopy(Invited)[J]. Acta Photonica Sinica, 2022, 51(8): 0851508 Copy Citation Text show less
    References

    [1] J DURNIN. Exact solutions for nondiffracting beams. I. The scalar theory. Optical Society of America, 4, 651-654(1987).

    [2] J DURNIN, M J JR, J H EBERLY. Diffraction-free beams. Physical Review Letters, 58, 1499-1501(1987).

    [3] Jiajun XIE, Hangshi XU, Wenhui YU等. Numerical simulation and experimental confirmation on reconstruction of Bessel beam. Laser & Optoelectronics Progress, 59, 0617021(2022).

    [4] Jiajun XIE, Shiyao TANG, Yongqiang CHEN等. Self-reconstruction characteristics of Bessel beam in biological tissue. Chinese Journal of Lasers, 49, 0507302(2022).

    [5] Hanqing HU, Fengtie WU, Run HU等. Propagation characteristics and self-reconstruction of radially polarized spiral Bessel beam. Acta Photonica Sinica, 48, 0326001(2019).

    [6] Ridong SUN, Lixin GUO, Mingjian CHENG等. Propagation characteristics of Bessel-Gaussian beam in anisotropic atmosphere. Acta Photonica Sinica, 47, 1201002(2018).

    [7] Wen WEN, Xiuxiang CHU. Quantitative comparison of self-healing ability between Bessel-Gaussian beam and Airy beam. Annals of Physics, 360, 549-555(2015).

    [8] Ming LEI, Baoli YAO. The explanation of Bessel-like beam from axicon with three-beam interference model. Acta Photonica Sinica, 35, 146-148(2006).

    [9] Guiyang YANG, Guolu MA, Guoying ZENG. Influence of the surface deviation axicon on the propagation characteristics of non-diffracting beam. Acta Photonica Sinica, 48, 0126002(2019).

    [10] Liang LIU, Xiujun HUANG, Hongyan XU等. Generating long-distance nondiffracting Bessel beams with liquid-immersion composite-axicon. Acta Photonica Sinica, 46, 1114001(2017).

    [11] A MOSTAFA, E A AKHLAGHI, H REPORTS. SSPIM: a beam shaping toolbox for structured selective plane illumination microscopy. Scientific Reports, 8, 10067(2018).

    [12] J K KIM, J KIM, W HA et al. Compact all-fiber Bessel beam generator based on hollow optical fiber combined with a hybrid polymer fiber lens. Optics Letters, 34, 2973-2975(2009).

    [13] W T CHEN, M KHORASANINEJAD, A Y ZHU et al. Generation of wavelength-independent subwavelength Bessel beams using metasurfaces. Light Science & Applications, 6, e16259(2016).

    [14] A VASARA, J TURUNEN, A FRIBERG et al. Realization of general nondiffracting beams with computer-generated holograms. Journal of the Optical Society of America A, 6, 1748-1754(1989).

    [15] R M HERMAN, T WIGGINS. Production and uses of diffractionless beams. Journal of the Optical Society of America A, 8, 932-942(1991).

    [16] A J COX, D C DIBBLE. Nondiffracting beam from a spatially filtered Fabry-Perot resonator. Journal of the Optical Society of America A, 9, 282-286(1992).

    [17] F O FAHRBACH, P SIMON, A ROHRBACH. Microscopy with self-reconstructing beams. Nature Photonics, 4, 780-785(2010).

    [18] F O FAHRBACH, A ROHRBACH. A line scanned light-sheet microscope with phase shaped self-reconstructing beams. Optics Express, 18, 24229-24244(2010).

    [19] Juanjuan ZHENG, Yanlong YANG, Lei MING et al. Fluorescence volume imaging with an axicon: Simulation study based on scalar diffraction method. Applied Optics, 51, 7236-7245(2012).

    [20] C RODRIGUEZ, Y LIANG, R LU et al. Three-photon fluorescence microscopy with an axially elongated Bessel focus. Optics Letters, 43, 1914-1917(2018).

    [21] Yanlong YANG, Baoli YAO, Ming LEI et al. Two-photon laser scanning stereomicroscopy for fast volumetric imaging. PLOS ONE, 11, e0168885(2016).

    [22] R LU, M TANIMOTO, M KOYAMA et al. 50 Hz volumetric functional imaging with continuously adjustable depth of focus. Biomedical Optics Express, 9, 1964-1976(2018).

    [23] W CHEN, R G NATAN, Y YANG et al. In vivo volumetric imaging of calcium and glutamate activity at synapses with high spatiotemporal resolution. Nature Communications, 12, 6630(2021).

    [24] S B PURNAPATRA, S BERA, P P MONDAL. Spatial filter based Bessel-like beam for improved penetration depth imaging in fluorescence microscopy. Scientific Reports, 2, 692(2012).

    [25] Y CHEN, A GLASER, J LIU. Bessel-beam illumination in dual-axis confocal microscopy mitigates resolution degradation caused by refractive heterogeneities. Journal of Biophotonics, 10, 68-74(2016).

    [26] Bingying CHEN, Xiaoshuai HUANG, Dongzhou GOU et al. Rapid volumetric imaging with Bessel-Beam three-photon microscopy. Biomedical Optics Express, 9, 1992-2000(2018).

    [27] G ANTONACCI, G D DOMENICO, S SILVESTRI et al. Diffraction-free light droplets for axially-resolved volume imaging. Scientific Reports, 7, 17(2017).

    [28] C SNOEYINK. Imaging performance of Bessel beam microscopy. Optics Letters, 38, 2550-2553(2013).

    [29] C CHAKRABORTY, M A ISLAM, C SNOEYINK et al. 10nm three-dimensional localization using Bessel beam microscopy. Measurement Science and Technology, 31, 045701-045708(2020).

    [30] H HE, C KONG, K Y CHAN et al. Resolution enhancement in extended depth of field for volumetric two-photon microscopy. Optics Letters, 45, 3054-3057(2020).

    [31] C SHEPPARD, M CASTELLO, G TORTAROLO et al. Image scanning microscopy with multiphoton excitation or Bessel beam illumination. Journal of the Optical Society of America A, 37, 1639-1649(2020).

    [32] X HUA, C GUO, W JIAN et al. Depth-extended, high-resolution fluorescence microscopy: Whole-cell imaging with double-ring phase (DRIP) modulation. Biomedical Optics Express, 10, 204-214(2019).

    [33] H S HE, Y X REN, R CHAN et al. Background-free volumetric two-photon microscopy by side-lobes-cancelled Bessel beam. IEEE Journal of Selected Topics in Quantum Electronics, 27, 6801307(2021).

    [34] Y Y LUNA-PALACIOS, J LICEA-RODRIGUEZ, M D CAMACHO-LOPEZ et al. Multicolor light-sheet microscopy for a large field of view imaging: A comparative study between Bessel and Gaussian light-sheets configurations. Journal of Biophotonics, 15, e202100359(2022).

    [35] Chi LIU, Zhifeng ZHAO, Cheng JIN et al. High-speed, multi-modal, label-free imaging of pathological slices with Bessel beam. Biomedical Optics Express, 11, 2694-2704(2020).

    [36] S TAKANEZAWA, T SAITOU, T IMAMURA. Wide field light-sheet microscopy with lens-axicon controlled two-photon Bessel beam illumination. Nature Communications, 12, 2979(2021).

    [37] T A PLANCHON, L GAO, D E MILKIE et al. Rapid three-dimensional isotropic imaging of living cells using Bessel beam plane illumination. Nature Methods, 8, 417-423(2011).

    [38] L GAO, L SHAO, C D HIGGINS et al. Noninvasive imaging beyond the diffraction limit of 3D dynamics in thickly fluorescent specimens. Cell, 151, 1370-1385(2012).

    [39] L GAO, S LIN, B C CHEN et al. 3D live fluorescence imaging of cellular dynamics using Bessel beam plane illumination microscopy. Nature Protocols, 9, 1083-1101(2014).

    [40] T ZHAO, S C LAU, Y WANG et al. Multicolor 4D Fluorescence Microscopy using Ultrathin Bessel Light Sheets. Scientific Reports, 6, 26159(2016).

    [41] L KOBELE, A ROHRBACH. A shape-switch-block method for confocal light-sheet microscopy with sectioned Bessel beams and stimulated emission depletion. Communications Physics, 3, s42005(2020).

    [42] F O FAHRBACH, A J ROHRBACH. Propagation stability of self-reconstructing Bessel beams enables contrast-enhanced imaging in thick media. Nature Communications, 3, 632(2012).

    [43] F O FAHRBACH, V GURCHENKOV, K ALESSANDRI et al. Self-reconstructing sectioned Bessel beams offer submicron optical sectioning for large fields of view in light-sheet microscopy. Optics Express, 21, 11425-11440(2013).

    [44] Y SHIN, D KIM, H KWON. Oblique scanning 2-photon light-sheet fluorescence microscopy for rapid volumetric imaging. Journal of Biophotonics, 11, e201700270(2018).

    [45] B B COLLIER, S AWASTHI, D K LIEU et al. Non-linear optical flow cytometry using a scanned, Bessel beam light-sheet. Scientific Reports, 5, 10751(2015).

    [46] G D DOMENICO, G RUOCCO, C COLOSI et al. Cancellation of Bessel beam side lobes for high-contrast light sheet microscopy. Scientific Reports, 8, 17178(2018).

    [47] C GOHN-KREUZ, A ROHRBACH. Light-sheet generation in inhomogeneous media using self-reconstructing beams and the STED-principle. Optics Express, 24, 5855-5865(2016).

    [48] Suhui DENG, Yiping XIAO, Jie HU et al. Sidelobe suppression in light-sheet fluorescence microscopy with Bessel beam plane illumination using subtractive imaging. Chinese Optics Letters, 16, 111801(2018).

    [49] Suhui DENG, Peng WANG, Yulong ZHANG et al. Subtraction method via phase mask enables contrast enhancement in scanned Bessel light-sheet microscopy. Journal of the Optical Society of America A, 37, 84-88(2020).

    [50] Chen BAI, Chao LIU, Hao JIA et al. Compressed blind deconvolution and denoising for complementary beam subtraction light-sheet fluorescence microscopy. IEEE Transactions on Biomedical Engineering, 66, 2979-2989(2019).

    [51] Chen BAI, Chao LIU, Xianghua YU et al. Imaging enhancement of light-sheet fluorescence microscopy via deep learning. IEEE Photonics Technology Letters, 31, 1803-1806(2019).

    [52] A B KASHEKODI, T MEINERT, R MICHIELS et al. Miniature scanning light-sheet illumination implemented in a conventional microscope. Biomedical Optics Expres, 9, 4263-4274(2018).

    [53] K M DEAN, P ROUDOT, E S WELF et al. Deconvolution-free subcellular imaging with axially swept light sheet microscopy. Biophysical Journal, 108, 2807-2815(2015).

    [54] Suhui DENG, Xianhong LI, Zijun DING et al. Axial resolution and contrast enhancement in digital scanned light-sheet microscopy via stimulated emission depletion. Journal of Optics, 22, 105301(2020).

    [55] F O FAHRBACH, V GURCHENKOV, K ALESSANDRI et al. Light-sheet microscopy in thick media using scanned Bessel beams and two-photon fluorescence excitation. Optics Express, 21, 13824-13839(2013).

    [56] Y FAN, M K CHEN, M QIU et al. Experimental demonstration of genetic algorithm based metalens design for generating side-lobe-suppressed, large depth-of-focus light sheet. Laser & Photonics Reviews, 16, 2100425(2021).

    [57] S HEUKE, F B LEGESSE, D AKIMOV et al. Bessel beam coherent anti-Stokes Raman scattering microscopy. Journal of the Optical Society of America B, 32, 1773-1779(2015).

    [58] S HEUKE, J ZHENG, D AKIMOV et al. Bessel beam CARS of axially structured samples. Scientific Reports, 5, 10991(2015).

    [59] F MASIA, I POPE, P WATSON et al. Bessel-beam hyperspectral CARS microscopy with sparse sampling: enabling high-content high-throughput label-free quantitative chemical imaging. Analytical Chemistry, 90, 3775-3785(2018).

    [60] Xueli CHEN, Ci ZHANG, Peng LIN et al. Volumetric chemical imaging by stimulated Raman projection microscopy and tomography. Nature Communications, 8, 15117(2017).

    [61] Xueli CHEN, Shouping ZHU, Huiyuan WANG et al. Accelerated stimulated Raman projection tomography by sparse reconstruction from sparse-view data. IEEE Transactions on Biomedical Engineering, 67, 1293-1302(2020).

    [62] Huiyuan WANG, Nan WANG, Hui XIE et al. Two-stage deep learning network-based few-view image reconstruction for parallel-beam projection tomography. Quantitative Imaging in Medicine and Surgery, 12, 2535-2551(2022).

    [63] Xueli CHEN, Xinyu WANG, Lin WANG et al. Stimulated Raman scattering signal generation in a scattering medium using self-reconstructing Bessel beams. Photonics Research, 8, 929-939(2020).

    [64] Xinyu WANG, Lin WANG, Peng LIN et al. Simulation of stimulated Raman scattering signal generation in scattering tissues excited by Bessel beams. Journal of Innovative Optical Health Sciences, 14, 2150008(2021).

    [65] Nang WANG, Fen REN, Li LI et al. Quantitative chemical sensing of drugs in scattering media with Bessel beam Raman spectroscopy. Biomedical Optics Expres, 13, 2488-2502(2022).

    [66] L GONG, S LIN, Z J L HUANG et al. Stimulated Raman scattering tomography enables label-free volumetric deep tissue imaging. Laser & Photonics Review, 15, 2100069(2021).

    [67] Luming YI, Liqun SUN, Xianshun MING. Simulation of penetration depth of Bessel beams for multifocal optical coherence tomography. Applied Optics, 57, 4809-4814(2018).

    [68] A CURATOLO, P MUNRO, D LORENSER et al. Quantifying the influence of Bessel beams on image quality in optical coherence tomography. Scientific Reports, 6, 23483(2016).

    [69] Q YANG, Y MIAO, T HUO et al. Deep imaging in highly scattering media by combining reflection matrix measurement with Bessel-like beam based optical coherence tomography. Applied Physics Letters, 113, 011106(2018).

    [70] Y CHEN, L A TRINH, J FINGLER et al. 3D invivo imaging with extended-focus optical coherence microscopy. Journal of Biophotonics, 10, 1411-1420(2017).

    [71] Q FANG, A CURATOLO, P WIJESINGHE et al. Ultrahigh-resolution optical coherence elastography through a micro-endoscope: towards in vivo imaging of cellular-scale mechanics. Biomedical Optics Express, 8, 5127-5138(2017).

    [72] J SHI, L WANG, C NOORDAM et al. Bessel-beam Grueneisen relaxation photoacoustic microscopy with extended depth of field. Journal of Biomedical Optics, 20, 116002(2015).

    [73] Bowen JIANG, Xiaoquan YANG, Qingming lUO. Reflection-mode Bessel-beam photoacoustic microscopy for in vivo imaging of cerebral capillaries. Optics Express, 24, 24167-20176(2016).

    [74] N VUILLEMIN, P MAHOU, D DéBARRE et al. Efficient second-harmonic imaging of collagen in histological slides using Bessel beam excitation. Scientific Reports, 6, 29863(2016).

    [75] N OLIVIER, D DéBARRE, P MAHOU et al. Third-harmonic generation microscopy with Bessel beams: a numerical study. Optics Express, 20, 24886-24902(2012).

    [76] D XU, W ZHOU, L J B O E PENG. Cellular resolution multiplexed FLIM tomography with dual-color Bessel beam. Biomedical Optics Express, 8, 570-578(2017).

    [77] Q FONTAINE, H HU, S PIGEON et al. Attenuation-free non-diffracting Bessel beams. Optics Express, 27, 30067-30080(2019).

    Xueli CHEN, Xinyu WANG, Tianyu YAN, Qi ZENG, Xinyi XU, Hui XIE. Harnessing the Power of Bessel Beam for Biomedical Microscopy(Invited)[J]. Acta Photonica Sinica, 2022, 51(8): 0851508
    Download Citation