Rongwen Lu, Ph.D.
Affiliations: | 2014 | Biomedical Engineering | University of Alabama, Birmingham, Birmingham, AL, United States |
Area:
Optics Physics, Biomedical EngineeringGoogle:
"Rongwen Lu"Parents
Sign in to add mentorXincheng Yao | grad student | 2014 | UAB | |
(Exploring intrinsic biomarkers for optical assessment of outer retina.) |
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Publications
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Aguilera N, Liu T, Bower AJ, et al. (2022) Widespread subclinical cellular changes revealed across a neural-epithelial-vascular complex in choroideremia using adaptive optics. Communications Biology. 5: 893 |
Giannini JP, Lu R, Bower AJ, et al. (2022) Visualizing retinal cells with adaptive optics imaging modalities using a translational imaging framework. Biomedical Optics Express. 13: 3042-3055 |
Lu R, Aguilera N, Liu T, et al. (2021) sub-diffraction adaptive optics imaging of photoreceptors in the human eye with annular pupil illumination and sub-Airy detection. Optica. 8: 333-343 |
Bower AJ, Liu T, Aguilera N, et al. (2021) Integrating adaptive optics-SLO and OCT for multimodal visualization of the human retinal pigment epithelial mosaic. Biomedical Optics Express. 12: 1449-1466 |
Yao X, Lu R, Wang B, et al. (2020) Super-resolution ophthalmoscopy: Virtually structured detection for resolution improvement in retinal imaging. Experimental Biology and Medicine (Maywood, N.J.). 1535370220970533 |
Lu R, Liang Y, Meng G, et al. (2020) Rapid mesoscale volumetric imaging of neural activity with synaptic resolution. Nature Methods |
Meng G, Liang Y, Sarsfield S, et al. (2019) High-throughput synapse-resolving two-photon fluorescence microendoscopy for deep-brain volumetric imaging . Elife. 8 |
Lu R, Tanimoto M, Koyama M, et al. (2018) 50 Hz volumetric functional imaging with continuously adjustable depth of focus. Biomedical Optics Express. 9: 1964-1976 |
Rodríguez C, Liang Y, Lu R, et al. (2018) Three-photon fluorescence microscopy with an axially elongated Bessel focus. Optics Letters. 43: 1914-1917 |
Meng G, Liang Y, Sarsfield S, et al. (2018) Author response: High-throughput synapse-resolving two-photon fluorescence microendoscopy for deep-brain volumetric imaging in vivo Elife |