莫建华
发布时间:2026-03-22浏览次数:1991
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1、AngleVLM-IoT: A Transfer-Learned Vision–Language Model for Automatic Anterior Chamber Angle Recognition in Connected Eye-Care Ecosystems,IEEE Transactions on Consumer Electronics,2026,C Zhou, L Ge, X Tian, J Liang, H Zhang, P Gao, J Mo, X Yin
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2、Improve deep learning-based reconstruction of optical coherence tomography angiography by siamese U-Net,Biomedical Physics & Engineering Express,2025,K Zhang, Z Yan, X Cao, X Yu, K Li, J Mo,11/6/065034
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3、Quantitative Assessment of Basement Membrane Loss in Melasma Using Attenuation Coefficient Estimation Based on Optical Coherence Tomography,Journal of Biophotonics,2025,J Liang, X Cao, K Li, T Zhu, J Mo,0/0/e202500491
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4、Diagnosis and Post‐Treatment Follow‐Up Evaluation of Melasma Using Optical Coherence Tomography and Deep Learning,Journal of Biophotonics,2025,X Cao, Y Lu, T Zhu, Z Yan, K Li, J Mo,18/6/e70006
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5、Determination of confocal parameters of OCT imaging for eliminating confocal effect on attenuation coefficient estimation,Optics Express,2025,Z Yan, X Cao, G Shi, J Mo,33/7/16275
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6、Dual blind-spot network for self-supervised denoising in OCT images,Biomedical Signal Processing and Control,2024,C Ge, X Yu, M Yuan, B Su, J Chen, PP Shum, J Mo, L Liu,97/0/106682
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7、Axial super-resolution optical coherence tomography via complex-valued network,Physics in Medicine & Biology,2023,L Wang, S Chen, L Liu, X Yin, G Shi, J Mo,68/23/235016
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8、Loss-balanced parallel decoding network for retinal fluid segmentation in OCT,Computers in Biology and Medicine ,2023,X Yu, M Li, C Ge, M Yuan, L Liu, J Mo, PP Shum, J Chen,165/0/107319
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9、Self-supervised Blind2Unblind deep learning scheme for OCT speckle reductions,Biomedical Optics Express,2023,X Yu, C Ge, M Li, M Yuan, L Liu, J Mo, PP Shum, J Chen,14/6/2773
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10、Multi-channel spectral-domain optical coherence tomography using single spectrometer,Chinese Optics Letters,2023,Y Wang, S Chen, K Lin, X Chen, Z Xu, S Lou, X Ge, G Ni, X Yu, J Mo, Q Mu, L Liu,21/5/051102
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11、Multiscale denoising generative adversarial network for speckle reduction in optical coherence tomography images,Journal of Medical Imaging,2023,X Yu, C Ge, M Li, MZ Aziz, J Mo, Z Fan,10/2/024006
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12、Optical coherence tomography for in vivo longitudinal monitoring of artificial dermal scaffold,Lasers in Surgery and Medicine,2023,Z Chen, Q Cheng, L Wang, Y Mo, K Li, J Mo,55/3/316
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13、CGNet‐assisted Automatic Vessel Segmentation for Optical Coherence Tomography Angiography,Journal of Biophotonics,2022,X Yu, C Ge, MZ Aziz, M Li, PP Shum, L Liu, J Mo,15/10/e202200067
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14、Compressive‐sensing swept‐source optical coherence tomography angiography with reduced noise,Journal of Biophotonics,2022,L Wang, Z Chen, Z Zhu, X Yu, J Mo,15/8/e202200087
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15、Centerline extraction by neighborhood-statistics thinning for quantitative analysis of corneal nerve fibers,Physics in Medicine & Biology,2022,Z Chen, X Yin, L Lin, G Shi, J Mo,67/14/145005
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16、Development of a handheld compression optical coherence elastography probe with a disposable stress sensor,Optics Letters,2021,X Wang, Q Wu, J Chen, J Mo,46/15/3669
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17、Inspection of intraocular lens with dual-side view optical coherence tomography,IEEE Photonics Journal,2021,Q Wu, X Wang, L Liu, J Mo,13/3/4
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18、Cellular-resolution in vivo tomography in turbid tissue through digital aberration correction,PhotoniX,2020,E Bo, X Ge, Y Luo, X Wu, S Chen, H Liang, S Chen, X Yu, P Shum, J Mo, N Chen, L Liu,1/1/9
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19、Dual-side view optical coherence tomography for thickness measurement on opaque materials,Optics Letters,2020,Q Wu, X Wang, L Liu, J Mo,45/4/832
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20、Nondestructive measurement of conformal coating thickness on printed circuit board with ultra-high resolution optical coherence tomography,IEEE Access,2019,X Shao, X Chen, X Yu, Y Hu, L Liu, F Shi, W Shao, J Mo,7/0/18138