Nripun Sredar
Affiliations: | Computer Science | University of Houston, Houston, TX, United States |
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Parents
Sign in to add mentorJason Porter | grad student | University of Houston | |
Alfredo Dubra | post-doc | Stanford (E-Tree) |
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Publications
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Akhavanrezayat A, Khatri A, Onghanseng NGL, et al. (2023) Structural and Functional Changes in Non-Paraneoplastic Autoimmune Retinopathy. Diagnostics (Basel, Switzerland). 13 |
Pinhas A, Migacz JV, Zhou DB, et al. (2022) Insights into Sickle Cell Disease through the Retinal Microvasculature: Adaptive Optics Scanning Light Ophthalmoscopy Correlates of Clinical OCT Angiography. Ophthalmology Science. 2: 100196 |
Pham AT, Onghanseng N, Halim MS, et al. (2022) Reflectance adaptive optics findings in a patient with Vogt-Koyanagi-Harada disease. American Journal of Ophthalmology Case Reports. 27: 101660 |
Migacz JV, Otero-Marquez O, Zhou R, et al. (2022) Imaging of vitreous cortex hyalocyte dynamics using non-confocal quadrant-detection adaptive optics scanning light ophthalmoscopy in human subjects. Biomedical Optics Express. 13: 1755-1773 |
Hargrave A, Sredar N, Khushzad F, et al. (2021) Novel Foveal Features Associated With Vision Impairment in Multiple Sclerosis. Investigative Ophthalmology & Visual Science. 62: 27 |
Sredar N, Razeen M, Kowalski B, et al. (2021) Comparison of confocal and non-confocal split-detection cone photoreceptor imaging. Biomedical Optics Express. 12: 737-755 |
Sredar N, Fagbemi OE, Dubra A. (2018) Sub-Airy Confocal Adaptive Optics Scanning Ophthalmoscopy. Translational Vision Science & Technology. 7: 17 |
Ivers KM, Sredar N, Patel NB, et al. (2015) In Vivo Changes in Lamina Cribrosa Microarchitecture and Optic Nerve Head Structure in Early Experimental Glaucoma. Plos One. 10: e0134223 |
Sredar N, Ivers KM, Queener HM, et al. (2013) 3D modeling to characterize lamina cribrosa surface and pore geometries using in vivo images from normal and glaucomatous eyes. Biomedical Optics Express. 4: 1153-65 |
Sredar N, Ivers KM, Queener HM, et al. (2013) A principal component analysis based approach to determine predominant lamina cribrosa beam orientation directly from in vivo images Journal of Vision. 13: P36-P36 |