[1] YANG Q H, HUANG Y F. Advances in measurement of optic axial length [J]. Academic Journal of Chinese PLA Medical School, 2014, 35(5): 505-508. (in Chinese)
[2] LI N, CHEN Z L.Clinical significance of axial length and progress of the measurements [J]. Medical Recapitulate, 2014, 20(10): 1812-1814. (in Chinese)
[3] OLSEN T. Sources of error in intraocular lens power calculation [J]. Journal Cataract & Refract Surgery, 1992, 18(2): 125-129.
[4] TRIVEDI R H, WILSON M E. Prediction error after pediatric cataract surgery with intraocular lens implantation: Contact versus immersion A-scan biometry [J]. Journal Cataract & Refract Surgery, 2011, 37(3): 501-505.
[5] FISCHER R E, TADIC-GALEB B, YODER JR P R. Optical System Design[M].2nd Edition. New York: SPIE Press, 2008: 359-364.
[6] TEHRANI M, KRUMMENAUER F, BLOME, et al.. Evaluation of the practicality of optical biometry and applanation ultrasound in 253 eyes [J]. J Cataract Refract Surg, 2003, 29(4): 741-746.
[7] OLSEN T, THORWEST M. Calibration of axial length measurements with the Zeiss IOLMaster [J]. J Cataract Refract Surg, 2005, 31(7): 1345-1350.
[8] KUNKEL M, SCHULZE J. Noncontact measurement of central lens thickness [J]. Glass Science and Technology, 2005, 78(5): 245-247.
[9] QIAO Y, ZHANG N, XU X P et al.. Design of lens thickness measurement system based on confocal technology [J]. Chinese Journal of Scientific Instrument, 2011, 32(7): 1635-1641. (in Chinese)
[10] ZHAO W, SUN R, QIU L, et al.. Lenses axial space ray tracing measurement [J]. Opt Express, 2010, 18(4): 3608-3617.
[11] SHI L B, QIU L R, WANG Y, et al.. Development of lens central thickness measurement system using laser differential confocal microscopy [J]. Chinese Journal of Scientific Instrument, 2012, 33(3): 683-688. (in Chinese)
[12] LIU W L, SHI L B, SUN R D, et al.. Measurement Method and Apparatus for Lenses Axial Space by Confocal Technique: China, CN101782373A [P]. [2010-03-17]. (in Chinese)
[13] WANG L. Optical Coherence Tomography for Retinal Imaging [D]. Hangzhou: Zhejiang University, 2008. (in Chinese)
[15] YOUNGQUIST R C, CARR S, DAVIES D E N, Optical coherence-domain reflectometry: a new optical evaluation technique[J]. Optics Letters, 1987, 12(3): 158-160.
[16] FERCHER A F, MENGEDOHT K, WERNER W. Eye-length measurement by interferometry with partially coherent light[J]. Optics Letters, 1988, 13(3); 168-188.
[17] HUANG D, SWANSON E, LIN C, et al.. Optical coherence tomography [J]. Science, 1991, 254(5035): 1178-1181.
[18] FERCHER A F, HITZENBERGER C K, KAMP G, et al.. Measurement of intraocular distances by backscattering spectral interferometry [J]. Optics Communications, 1995, 117(1/2): 43-48.
[19] CHINN S R, SWANSON E A, FUJIMOTO J G. Optical coherence tomography using a frequency-tunable optical source [J]. Optics Letters, 1997, 22(5): 340-342.
[20] HUBER R, ADLER D C, FUJIMOTO J G. Buffered Fourier domain mode locking: unidirectional swept laser sources for optical coherence tomography imaging at 370, 000 lines/s [J]. Optics Letters, 2006, 31(20): 2975-2977.
[21] SHI B Y, MENG ZH, LIU T G, et al.. Identifying artificial fingerprint by using optical coherence tomography [J].Journal of Optoelectronics Laser, 2013, 24(12): 2404-2408. (in Chinese)
[22] LI Q. The Research of Spectral OCT Endoscope Imaging System [D]. Tianjin: Tianjin University, 2010. (in Chinese)
[23] AKMAN A, ASENA L, GNGR S G. Evaluation and comparison of the new swept source OCT based IOL Master 700 with the IOL Master 500[J]. The British Journal of Ophthalmology, 2015, 100(9): 1201-1205.
[24] SHI G H, DING ZH H, DAI Y, et al.. Ophthalmic imaging by optical coherence tomography [J]. Chinese Journal of Lasers, 2008(9): 1429-1431. (in Chinese)
[25] WIESAUER K, PIRCHER M, GTZINGER E, et al.. En-face scanning optical coherence tomography with ultra-high resolution for material investigation [J].Optics Express, 2005, 13(3): 1015-1024.
[26] SU R, KIRILLIN M, EKBERG P, et al.. Optical coherence tomography for quality assessment of embedded micro channels in alumina ceramic [J]. Optics Express, 2012, 20(4): 4603-4618.
[27] YAN X G, SHEN Y, PAN C.Tapered structure based all-fiber probe for endoscopic optical coherence tomography [J]. Acta Physica Sinica, 2016, 65(2): 96-103. (in Chinese)
[28] LIN Q, ZHENG Q L, HUANG CH S.Clinical application of skin CT in the diagnosis of basal cell carcinoma [J]. Fujian Medical Journal, 2013, 35(5): 142-144. (in Chinese)
[29] LU G J.The Spectral Domain OCT Principle Applied to Retinal Tomography and Its Research on Several Unit Technologies [D]. Nanjing: Nanjing University of Science and Technology, 2008. (in Chinese)
[30] Carl Zeiss Meditec AG. IOLMaster 700 brochure en 32 010 0009v [Z]. 2017.
[31] COURTEVILLE A, WILHELM R, DELAVEAU M, et al.. Contact-free on-axis metrology for the fabrication and testing of complex optical systems [J].SPIE, 2005, 5965: 596510-596510-12.
[32] LARKIN K G. Efficient nonlinear algorithm for envelope detection in white light interferometry [J]. Journal of the Optical Society of America A, 1996, 13(4): 832-843.
[33] WANG X Y. Subverting the visual image beyond the human eye—fisheye lens [N/OL].http://digi.163.com/07/0703/14/3IFVQEJS001628C0.html. [2007-07-02]. (in Chinese)
[35] GUO ZH W, WEN G Q, ZHANG H X, et al.. Analysis and coherent detection of mode coupling of polarization maintaining fiber [J]. Infrared and Laser Engineering, 2012, 41(5): 1282-1286.(in Chinese)
[36] ZHANG CH X, LI Y, XU H J, et al.. Influence of polarization maintaining fibers and polarizer on the lightwave spectrum [J]. Spectroscopy and Spectral Analysis, 2008, 28(7): 1689-1694.(in Chinese)