[1] 许珈诺. 光学相干层析成像及带状图形检测[J]. 光电技术应用, 2019, 34(1): 41-44. doi: 10.3969/j.issn.1673-1255.2019.01.009XU J N. Analysis of optical coherence tomography technology and ridge image detection[J]. Application of Photoelectric Technology, 2019, 34(1): 41-44 (in Chinese). doi: 10.3969/j.issn.1673-1255.2019.01.009
[2] 夏松, 杨景元, 陈有信. 息肉样脉络膜血管病变患眼光相干断层扫描图像特征观察[J]. 中华眼底病杂志, 2019, 35(4): 385-387. doi: 10.3760/cma.j.issn.1005-1015.2019.04.014XIA S, YANG J Y, CHEN Y X. Observation on image characteristics of ophthalmic coherence tomography in patients with polypoid choroidal vascular disease[J]. Chinese Journal of Fundus Diseases, 2019, 35(4): 385-387 (in Chinese). doi: 10.3760/cma.j.issn.1005-1015.2019.04.014
[3] NASSIF N A, CENSE B, PARK B H, et al. In vivo high-resolution video-rate spectral-domain optical coherence tomography of the human retina and optic nerve[J]. Optics Express, 2004, 12(3): 367-376. doi: 10.1364/OPEX.12.000367
[4] ASRANI S, SARUNIC M, SANTIAGO C, et al. Detailed visualization of the anterior segment using fourier-domain optical coherence tomography[J]. Archives of Ophthalmology, 2008, 126(6): 765-771. doi: 10.1001/archopht.126.6.765
[5] SHEN Y, CHEN Z, BAO W, et al. Amplified phase measurement of thin-film thickness by swept-source spectral interferometry[J]. Optics Communications, 2015, 355: 562-566. doi: 10.1016/j.optcom.2015.07.029
[6] ERKKI A, AHMED A, E J G. Online monitoring of printed electro-nics by spectral-domain optical coherence tomography[J]. Scientific Reports, 2013, 3(1): 1562. doi: 10.1038/srep01562
[7] 黄亚雄, 姚建铨, 凌福日, 等. 基于相干层析的太赫兹成像技术研究[J]. 激光与红外, 2015, 45(10): 1261-1265. doi: 10.3969/j.issn.1001-5078.2015.10.023HUANG Y X, YAO J Q, LING F R, et al. Terahertz imaging technology based on coherent tomography[J]. Laser and Infrared, 2015, 45(10): 1261-1265 (in Chinese). doi: 10.3969/j.issn.1001-5078.2015.10.023
[8] 杨海宾. 基于光学相干层析成像技术的三维轮廓测量系统[D]. 广州: 广东工业大学, 2019: 2-3.YANG H B. Three-dimensional contour measurement system based on optical coherence tomography[D]. Guangzhou: Guangdong University of Technology of China, 2019: 2-3 (in Chinese).
[9] 高峰. 应用于人眼成像的扫频源相干层析系统的关键技术研究[D]. 成都: 电子科技大学, 2016: 11-12.GAO F. Key technologies research in sweept source optical coherence tomography applied on human eye imaging[D]. Chengdu: University of Electronic Science and Technology, 2016: 11-12 (in Chinese).
[10] 吴继东, 曾绍群, 骆清铭. 采用LED的高灵敏度OCT系统[J]. 光电工程, 2001, 28(4): 46-49.WU J D, ZENG Sh Q, LUO Q M. A high sensitive optical coherence tomography system with light-emitting diode[J]. Opto-Electronic Engineering, 2001, 28(4): 46-49 (in Chinese).
[11] NANDAKUMAR H, SRIVASTAVA S. Low cost open-source oct using undergraduate lab components[M]. London, UK: IntechOpen, 2020: 75-89.
[12] 罗曼婷. 基于时域光学相干层析系统的多层薄膜结构的无损检测和评价[D]. 福州: 福州大学, 2015: 4-5.LUO M T. Non-destructive testing and evaluation of multilayered thin-film structures based on time-domain optical coherence tomography system[D]. Fuzhou: Fuzhou University, 2015: 4-5 (in Ch-inese).
[13] APELIAN C, HARMS F, THOUVENIN O, et al. Dynamic full field optical coherence tomography: subcellular metabolic contrast revealed in tissues by interferometric signals temporal analysis[J]. Biomedical Optics Express, 2016, 7(4): 1511-1524. doi: 10.1364/BOE.7.001511
[14] 杨强, 祝连庆, 樊凡, 等. 正向切片光学相干断层成像系统的信号提取方法[J]. 光学学报, 2020, 40(7): 0711001.YANG Q, ZHU L Q, FAN F, et al. Signal retrieval method of en-face optical coherence tomography system[J]. Acta Optica Sinica, 2020, 40(7): 0711001 (in Chinese).
[15] 张世鑫, 赵爽, 王一璋, 等. 自由曲面透镜白光LED光束整形技术[J]. 激光技术, 2021, 45(3): 357-361.ZHANG Sh X, ZHAO Sh, WANG Y Zh, et al. White led beam shaping technology based on free-form surface lens[J]. Laser Techno-logy, 2021, 45(3): 357-361 (in Chinese).
[16] 张倩, 徐先锋, 袁红光, 等. 四步相移数字全息干涉术相移提取和物光重建[J]. 光电工程, 2011, 38(8): 139-144.ZHANG Q, XU X F, YUAN H G, et al. Phase-shift extraction and wave reconstruction in four-step phase-shifting interferometry[J]. Optoelectronic Engineering, 2011, 38 (8): 139-144 (in Chinese).
[17] 王丽, 符子瑞, 刘福平, 等. 基于四步相移法实现全息的信息隐藏[J]. 北京印刷学院学报, 2017, 25(2): 30-34.WANG L, FU Z R, LIU F P, et al. Holographic information hiding based on the four-step phase shifting method[J]. Journal of Beijing Institute of Printing, 2017, 25(2): 30-34 (in Chinese).
[18] 蔡长青, 贺玲凤. 基于四步相移的相位差提取方法[J]. 华南理工大学学报(自然科学版), 2011, 39(9): 93-96.CAI Ch Q, HE L F. Phase difference extraction based on four-step phase shifting[J]. Journal of South China University of Technology (Natural Science Edition), 2011, 39(9): 93-96(in Chinese).
[19] 徐振南. LED弱相干相移数字全息显微术及相移定标技术研究[D]. 广州: 暨南大学, 2014: 14-15.XU Zh N. Research on led based low-coherence phase-shifting digital holographic microscopy and phase-shifting calibration[D]. Guangzhou: Jinan University, 2014: 14-15 (in Chinese).
[20] MAZLIN V, XIAO P, DALIMIER E, et al. In vivo high resolution human corneal imaging using full-field optical coherence tomography[J]. Biomedical Optics Express, 2018, 9(2): 557-568.