• Chinese Optics Letters
  • Vol. 21, Issue 10, 101101 (2023)
Chaoliang Chen1,*, Yurui Pu1, and Weisong Shi2
Author Affiliations
  • 1Advanced Photonics Center, School of Electronic Science & Engineering, Southeast University, Nanjing 210096, China
  • 2Department of Optical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China
  • show less
    DOI: 10.3788/COL202321.101101 Cite this Article Set citation alerts
    Chaoliang Chen, Yurui Pu, Weisong Shi, "Low-cost spectrometer design for ultra-high resolution spectral domain optical coherence tomography," Chin. Opt. Lett. 21, 101101 (2023) Copy Citation Text show less
    References

    [1] D. Huang, E. A. Swanson, C. P. Lin, J. S. Schuman, W. G. Stinson, W. Chang, M. R. Hee, T. Flotte, K. Gregory, C. A. Puliafito, J. G. Fujimoto. Optical coherence tomography. Science, 254, 1178(1991).

    [2] W. Drexler, J. G. Fujimoto. State-of-the-art retinal optical coherence tomography. Prog. Retin. Eye Res., 27, 45(2008).

    [3] D. M. Sampson, A. M. Dubis, F. K. Chen, R. J. Zawadzki, D. D. Sampson. Towards standardizing retinal optical coherence tomography angiography: a review. Light Sci. Appl., 11, 63(2022).

    [4] C. Chen, K. H. Y. Cheng, R. Jakubovic, J. Jivraj, J. Ramjist, R. Deorajh, W. Gao, E. Barnes, L. Chin, V. X. D. Yang. High speed, wide velocity dynamic range Doppler optical coherence tomography (Part V): optimal utilization of multi-beam scanning for Doppler and speckle variance microvascular imaging. Opt. Express, 25, 7761(2017).

    [5] J. Olsen, J. Holmes, G. B. E. Jemec. Advances in optical coherence tomography in dermatology—a review. J. Biomed. Opt., 23, 040901(2018).

    [6] G. J. Tearney, M. E. Brezinski, J. F. Southern, B. E. Bouma, S. A. Boppart, J. G. Fujimoto. Optical biopsy in human gastrointestinal tissue using optical coherence tomography. Am. J. Gastroenteral., 92, 1800(1997).

    [7] J. Zhang, T. Nguyen, B. Potsaid, V. Jayaraman, C. Burgner, S. Chen, J. Li, K. Liang, A. Cable, G. Traverso, H. Mashimo, J. G. Fujimoto. Multi-MHz MEMS-VCSEL swept-source optical coherence tomography for endoscopic structural and angiographic imaging with miniaturized brushless motor probes. Biomed. Opt. Express, 12, 2384(2021).

    [8] R. Leitgeb, M. Wojtkowski, A. Kowalczyk, C. K. Hitzenberger, M. Sticker, A. F. Fercher. Spectral measurement of absorption by spectroscopic frequency-domain optical coherence tomography. Opt. Lett., 25, 820(2000).

    [9] S. H. Yun, C. Boudoux, G. J. Tearney, B. E. Bouma. High-speed wavelength-swept semiconductor laser with a polygon-scanner-based wavelength filter. Opt. Lett., 28, 1981(2003).

    [10] L. Liu, J. A. Gardecki, S. K. Nadkarni, J. D. Toussaint, Y. Yagi, B. E. Bouma, G. J. Tearney. Imaging the subcellular structure of human coronary atherosclerosis using micro–optical coherence tomography. Nat. Med., 17, 1010(2011).

    [11] C. Chen, W. Shi, R. Reyes, V. X. D. Yang. Buffer-averaging super-continuum source based spectral domain optical coherence tomography for high speed imaging. Biomed. Opt. Express, 9, 6529(2018).

    [12] R. Haindl, M. Duelk, S. Gloor, J. Dahdah, J. Ojeda, C. Sturtzel, S. Deng, A. J. Deloria, Q. Li, M. Liu, M. Distel, W. Drexler, R. Leitgeb. Ultra-high-resolution SD-OCM imaging with a compact polarization-aligned 840 nm broadband combined-SLED source. Biomed. Opt. Express, 11, 3395(2020).

    [13] S. S. Lee, W. Song, E. S. Choi. Spectral domain optical coherence tomography imaging performance improvement based on field curvature aberration-corrected spectrometer. Appl. Sci., 10, 3657(2020).

    [14] W. Yu, J. Mavadia-Shukla, J. Xi, W. Liang, X. Yu, S. Yu, X. Li. Optimal operational conditions for supercontinuum-based ultrahigh-resolution endoscopic OCT imaging. Opt. Lett., 41, 250(2016).

    [15] L. Wang, X. Yu, X. Ge, X. Wu, X. Wang, E. Bo, N. Wang, X. Liu, G. Ni, L. Liu. Design and optimization of a spectrometer for high-resolution SD-OCT. Laser Phys. Lett., 16, 045603(2019).

    [16] W. Drexler, J. A. Izatt, M. A. Choma, J. Fujimoto. Theory of Optical Coherence Tomography. Optical Coherence Tomography: Technology and Applications, 2, 65(2015).

    [17] K. Wang, Z. Ding. Spectral calibration in spectral domain optical coherence tomography. Chin. Opt. Lett., 6, 902(2008).

    [18] A. F. Fercher, C. K. Hitzenberger, M. Sticker, R. Zawadzki, B. Karamata, T. Lasser. Numerical dispersion compensation for partial coherence interferometry and optical coherence tomography. Opt. Express, 9, 610(2001).

    Data from CrossRef

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [1] 朱喆 Zhu Zhe, 王麓屹 Wang Luyi, 陈学文 Chen Xuewen, 林巍 Lin Wei, 杨洋 Yang Yang, 张静 Zhang Jing, 刘涛 Liu Tao, 韦小明 Wei Xiaoming, 杨中民 Yang Zhongmin.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    [2] 成驰 Cheng Chi, 赵慧洁 Zhao Huijie, 郭琦 Guo Qi, 李然 Li Ran.

    Chaoliang Chen, Yurui Pu, Weisong Shi, "Low-cost spectrometer design for ultra-high resolution spectral domain optical coherence tomography," Chin. Opt. Lett. 21, 101101 (2023)
    Download Citation