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1.Yi He, Ling Wei, Zhibin Wang, Jinsheng Yang, Xiqi Li,Guohua Shi*, et al., Precision targeting for retinal motion extraction using cross-correlation with a high speed line scanning ophthalmoscope, Journal of Optics, 已接受,2015
2.Xiqi Li, Guohua Shi*, et al., Microscope-integrated Optical Coherence Tomography for Image-aided Positioning of Glaucoma Surgery, Journal of Biomedical Optics, 20(7),2015
3.Yi He, Ling Wei, Zhibin Wang, Jinsheng Yang, Xiqi Li,Guohua Shi*, et al., Extraction of ultra-high frequency retinal motions with a line scanning quasi-confocal ophthalmoscope, Journal of Optics, 17(1), 2015
4.Wang Zhibin, Wei Dan, Wei Ling, He Yi, Shi, Guohua*, et al., Aberration correction during real time in vivo imaging of bone marrow with sensorless adaptive optics confocal microscope, Journal of Biomedical Optics, 19(8), 2014
5.Wang Zhibin, Shi, Guohua*, Zhang Yudong,, Adaptive aberration correction in confocal scanning fluorescence microscopy, CHINESE OPTICS LETTERS, 12(Suppl.), 2014
6.Shi GuoHua, et al. Morphological changes in Schlemm’s canal in treated and newly diagnosed untreated glaucomatous eyes, Science China Life Sciences, 57(10): 1-5, 2014
7.Wang Pinghe, Shi Guohua*, et.al., Self-seeded multi-wavelength Brillouin-erbium fibre laser with 20 GHz frequency gap, Journal of Modern Optics, 61(13), 2014
8.Shi G H, Wang F et.al., Assessment of Schlemm's canal in a normal human eye by swept source optical coherence tomography, Laser Physics Letters, 10(7), 2013
9.He Yi, Li Hao, Lu Jing, Shi Guohua*, Zhang Yudong. Retina imaging by using compact line scanning quasi-confocal ophthalmoscope, Chinese Optics Letters, 11(2), 2013
10.He Yi, Lu Jing, Wei Ling, Shi Guohu*, et.al., Optical design of a full-pupil field,non-contact and high resolution corneal curved objective lens, Optik, 124(18), 2013
11.Yuan YM, Shao YL, Tao AZ, Shi GH, et al., Ocular Anterior Segment Biometry and High Order Wavefront Aberrations During Accommodation, INVEST OPHTH VIS SCI, 54(10): 2013
12.Wei L, Shi, GH*, Lu J, et al., Centroid offset estimation in the Fourier domain for a highly sensitive Shack-Hartmann wavefront sensor, Journal Of Optics, 15(5) 2013
13.Guohua Shi, Yuanyuan Wang, et al., Measurement of ocular anterior segment dimension and wave-front aberration simultaneously during accommodation, Journal of Biomedical Optics, 17(12), 2012
14.Shi Guohua, Wang Fei, et al., Morphometric measurement of Schlemm's canal in normal human eye using anterior segment swept source optical coherence tomography, Journal of Biomedical Optics, 17(1), 2012
15.Fei Wang, Guohua Shi*, et al., Comparison of Schlemm’s canal’s biological parameters in primary open angle glaucoma and normal human eyes with swept source optical coherence tomography, Journal of Biomedical Optics, 17(11), 2012
16.Li H, Lu J, Shi GH*, et al., Automatic montage of retinal images in adaptive optics confocal scanning laser ophthalmoscope, OPTICAL ENGINEERING, 51(5), 2012
17.Li H, Lu J, Shi GH*, et al., Measurement of oxygen saturation in small retinal vessels with adaptive optics confocal scanning laser ophthalmoscope, Journal of Biomedical Optics, 16(11), 2011
18.Li XQ, Shi GH*, Wei L, et al., HIGH-SPEED SPECTRAL DOMAIN OPTICAL COHERENCE TOMOGRAPHY SIGNAL PROCESSING WITH TIME-DOMAIN INTERPOLATION USING GRAPHICS PROCESSING UNIT, J INNOV OPT HEAL SCI, 4(3), 2011
19.Li H, Lu J, Shi GH*, et al., Real-time blind deconvolution of retinal images in adaptive optics scanning laser ophthalmoscopy, OPT COMMUN, 284(13), 2011
20.Li H, Lu J, He Y, Shi GH*, et al., Superresolution in adaptive optics confocal scanning laser ophthalmoscope, ACTA PHYSICA SINICA, 60(3), 2011
21.Li H, Yang HS, Shi GH*, et al., Adaptive optics retinal image registration from scale-invariant feature transform, Optik,122(9), 2011
22.Li XQ, Shi GH*, et al., Time-domain interpolation on graphics processing unit, J INNOV OPT HEAL SCI, 4(1), 2011
23.Li H, Lu J, He Y, Shi GH*, et al., Tracking features in retinal images of adaptive optics confocal scanning laser ophthalmoscope using KLT-SIFT algorithm, BIOMED OPT EXPRESS, 1(1), 2010