RBP BIBLIOGRAPHY 2022

RPB BIBLIOGRAPHY 2022

UNIVERSITY OF CALIFORNIA, LOS ANGELES DEPARTMENT OF OPHTHALMOLOGY

AMERICAN JOURNAL OF OPHTHALMOLOGY

 

Ahmadi, A., Sorensen, A., Villaflores, C.W.A., Mafi, J.N., Vangala, S.S., Hofer, I.S., Bartlett, J.D., Cheng,

E.M., Duval, V.F., Damberg, C., Elashoff, D., Goldstein, N.J., Ladapo, J.A., Moore, J.M., Pessegueiro, A.M., Shu, S.B., Skootsky, S.A., Turner, A., Sarkisian, C.A., 2021. Protocol for pragmatic randomised trial: integrating electronic health record-based behavioural economic “nudges” into the electronic health record to reduce preoperative testing for patients undergoing cataract surgery. BMJ Open 11, e049568. https://doi.org/10.1136/bmjopen-2021-049568

 

Airaldi, M., Corvi, F., Cozzi, M., Nittala, M.G., Staurenghi, G., Sadda, S.R., 2022. Differences in LongTerm Progression of Atrophy between Neovascular and Nonneovascular Age-Related Macular

Degeneration. Ophthalmol Retina 6, 914–921. https://doi.org/10.1016/j.oret.2022.04.012

 

Anastasio, T.J., Demer, J.L., Leigh, R.J., Luebke, A.E., von Opstal, A.J., Optican, L.M., Ramat, S., Zee,

D.S., 2022. Preface. Prog Brain Res 267, xvii–xviii. https://doi.org/10.1016/S0079-6123(22)00029-2

 

Araya, J., Araya, C., Conrads, T., Sadun, A., Seleme, N., 2022. Leber Hereditary Optic Neuropathy Conversion in a Patient With Idiopathic Intracranial Hypertension. J Neuroophthalmol.

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Arnold, R.W., Donahue, S.P., Silbert, D.I., Longmuir, S.Q., Bradford, G.E., Peterseim, M.M.W., Hutchinson, A.K., O’Neil, J.W., de Alba Campomanes, A.G., Pineles, S.L., 2022. AAPOS uniform guidelines for instrument-based pediatric vision screen validation 2021. J AAPOS 26, 1.e1-1.e6. https://doi.org/10.1016/j.jaapos.2021.09.009

 

Au, A., Jung, J., Johnson, M.W., Baumal, C., Daily, M.J., Gomolin, J.E.S., Gupta, R.R., Rahimy, E., Wu, L., Sadda, S.R., Sarraf, D., 2022. Henle Fiber Layer Hemorrhage in Macular Telangiectasia Type 2:

Is Right Eye Dominance Coincidence or Consequence? Am J Ophthalmol 241, 80–86. https://doi.org /10.1016/j.ajo.2022.04.002

 

Bacci, T., Fisher, Y.L., Freund, K.B., Sadda, S.R., 2022. Diagnostic and Therapeutic Challenges. Retina

42, 1623–1627. https://doi.org/10.1097/IAE.0000000000003302

 

Bansal, A., Lee, W.W., Sarraf, D., Sadda, S.R., Berger, A.R., Wong, D.T., Kertes, P.J., Kohly, R.P., Hillier, R.J., Muni, R.H., 2022. Persistent subfoveal fluid in pneumatic retinopexy versus pars plana vitrectomy for rhegmatogenous retinal detachment: posthoc analysis of the PIVOT randomised  trial.

Br J Ophthalmol bjophthalmol-2021-320981. https://doi.org/10.1136/bjo-2021-320981

 

Barnes, S., 2022. Visual processing: When two synaptic strata are better than one. Curr Biol 32, R129– R131. https://doi.org/10.1016/j.cub.2021.12.044

 

Bharti, K., den Hollander, A.I., Lakkaraju, A., Sinha, D., Williams, D.S., Finnemann, S.C., BowesRickman, C., Malek, G., D’Amore, P.A., 2022. Cell culture models to study retinal pigment epithelium-related pathogenesis in age-related macular degeneration. Exp Eye Res 222, 109170. https://doi.org/10.1016/j.exer.2022.109170

 

Bittner, Ava Katherine, Kaminski, J.E., Ross, N.C., Shepherd, J.D., Thoene, S.J., Bui, S.Z., Yoshinaga,

P.D., 2022. Telerehabilitation Training to Facilitate Improved Reading Ability with New

Magnification Devices for Low Vision. Optom Vis Sci 99, 743–749. https://doi.org/10.1097 /OPX.0000000000001944

 

Bittner, A.K., Yoshinaga, P.D., Rittiphairoj, T., Li, T., 2023. Telerehabilitation for people with low vision. Cochrane Database Syst Rev 1, CD011019. https://doi.org/10.1002/14651858.CD011019.pub4

 

Bittner, Ava K., Yoshinaga, P.D., Shepherd, J.D., Kaminski, J.E., Malkin, A.G., Chun, M.W., Chan, T.L., Deemer, A.D., Ross, N.C., 2022. Acceptability of Telerehabilitation for Magnification Devices for the Visually Impaired Using Various Approaches to Facilitate Accessibility. Transl Vis Sci Technol

11, 4. https://doi.org/10.1167/tvst.11.8.4

 

Bonnet, Clémence, Chauhan, T., Encampira Luna, E., Le, Q., Tseng, C.-H., Deng, S.X., 2022a. Cell

Morphology as an In Vivo Parameter for the Diagnosis of Limbal Stem Cell Deficiency. Cornea 41, 995–1001. https://doi.org/10.1097/ICO.0000000000002955

 

Bonnet, Clemence, Chehaibou, I., Ghaffari, R., Jackson, N.J., Bostan, C., Hubschman, J.-P., Harissi-

Dagher, M., Aldave, A.J., 2022. Idiopathic Vitritis after Boston Type 1 Keratoprosthesis

Implantation: Incidence, Risk Factors and Outcomes in a Multicentric Cohort. Ocul Immunol

Inflamm 30, 769–775. https://doi.org/10.1080/09273948.2020.1826541

 

Bonnet, Clémence, Chehaibou, I., McCannel, C.A., McCannel, T.A., Prasad, P.S., Kreiger, A.E.,

Schwartz, S.D., Aldave, A., Hubschman, J.-P., 2022b. RETINAL DETACHMENT IN EYES WITH

BOSTON TYPE 1 KERATOPROSTHESIS: Surgical Techniques and Mid-Term Outcomes. Retina

42, 957–966. https://doi.org/10.1097/IAE.0000000000003389

 

Bonnet, C., Onishi, A.C., Aldave, A.J., 2023. Infectious Crystalline Keratopathy Secondary to

Mycobacterium chelonae. Cornea 42, 116–117. https://doi.org/10.1097/ICO.0000000000003125

 

Bonnet, Clémence, Tseng, C.-H., Kruse, F., Deng, S.X., 2022c. Comment on: Long-Term Outcome After

Superficial Keratectomy of the Abnormal Epithelium for Partial Limbal Stem Cell Deficiency. Am J Ophthalmol 238, 202–203. https://doi.org/10.1016/j.ajo.2022.01.027

 

Budoff, G., Schwartz, S.D., Hubschman, J.-P., 2022. Post-Retinal Detachment Repair Diffuse Tractional Retinoschisis Sparing Region of Internal Limiting Membrane Peel. Ophthalmol Retina 6, 785. https://doi.org/10.1016/j.oret.2022.06.012

 

Cabral, D., Ramtohul, P., Zatreanu, L., Galhoz, D., Leitao, M., Nogueira, V., Sarraf, D., Freund, K.B., 2022. Deep Capillary Plexus Features in Acute Macular Neuroretinopathy: Novel Insights Based on the Anatomy of Henle Fiber Layer. Invest Ophthalmol Vis Sci 63, 4. https://doi.org/10.1167 /iovs.63.13.4

 

Cabrera, A.P., Stoddard, J., Santiago Tierno, I., Matisioudis, N., Agarwal, M., Renner, L., Palegar, N., Neuringer, M., McGill, T., Ghosh, K., 2022. Increased cell stiffness contributes to complementmediated injury of choroidal endothelial cells in a monkey model of early age-related macular degeneration. J Pathol 257, 314–326. https://doi.org/10.1002/path.5892

 

Cale, M., Roelofs, K.A., Goldberg, R.A., Leibowitz, S., Glasgow, B.J., Rootman, D.B., 2022.

Hyperostosis associated with orbital vascular malformation. Orbit 1–4. https://doi.org/10.1080 /01676830.2022.2101129

 

Cassedy, A., Altaye, M., Andringa, J., Cooper, A.M., Drews-Botsch, C., Engelhard, G.J., Hennard, T.,

Holland, G.N., Jenkins, K., Lambert, S.R., Lipscomb, J., McCracken, C., McCurdy, D.K.,

McDonald, J., Mwase, N., Prahalad, S., Stahl, E., Utz, V.M., Walker, A.A., Yeh, S., Angeles-Han, S.T., 2022. Assessing the Validity and Reliability of the Effects of Youngsters’ Eyesight on Quality of Life Questionnaire Among Children With Uveitis. Arthritis Care Res (Hoboken) 74, 355–363. https://doi.org/10.1002/acr.24491

 

Cavuoto, K.M., Chang, M.Y., Heidary, G., Morrison, D.G., Trivedi, R.H., Binenbaum, G., Kim, S.J.,

Pineles, S.L., 2022. Effectiveness of Laser Refractive Surgery to Address Anisometropic

Amblyogenic Refractive Error in Children: A Report by the American Academy of Ophthalmology.

Ophthalmology 129, 1323–1331. https://doi.org/10.1016/j.ophtha.2022.06.022

 

Chan, J.W., Sultan, W., Karanjia, R., Sadun, A.A., 2022. Altering neuronal circuitry with 4-aminopyridine for visual improvement in Leber’s hereditary optic neuropathy (LHON). Mitochondrion 62,

181–186. https://doi.org/10.1016/j.mito.2021.12.003

 

Chang, D.H., Hu, J., Miller, K.M., Vilupuru, S., Zhao, W., 2022. Post-Market Evaluation of Rotational

Stability and Visual Performance of a New Toric Intraocular Lens with Frosted Haptics. Clin Ophthalmol 16, 4055–4064. https://doi.org/10.2147/OPTH.S389304

 

Chang, M.Y., Binenbaum, G., Heidary, G., Cavuoto, K.M., Morrison, D.G., Trivedi, R.H., Kim, S.J., Pineles, S.L., 2023. Surgical Treatments to Improve Visual Acuity in Infantile Nystagmus Syndrome:

A Report by the American Academy of Ophthalmology. Ophthalmology 130, 331–344.

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Chen, A.C., Pelsor, N.P., Wang, K., Glasgow, B.J., Aldave, A.J., 2022. Late Onset Interface Calcium

Deposition After Laser In Situ Keratomileusis. Cornea 41, 116–120. https://doi.org/10.1097 /ICO.0000000000002728

 

Chen, J.J., Flanagan, E.P., Bhatti, M.T., Tisavipat, N., Jamali, S., Kunchok, A., Eggenberger, E.R., Nome,

M.D., Sotirchos, E.S., Vasileiou, E.S., Henderson, A.D., Arnold, A.C., Bonelli, L., Seleme, N.,

Mejia-Vergara, A.J., Moss, H.E., Padungkiatsagul, T., Stiebel-Kalish, H., Lotan, I., Wilf-Yarkoni, A., Hellmann, M.A., Vuppala, A., Hodge, D., Pittock, S.J., 2022a. Details and outcomes of a large cohort of MOG-IgG associated optic neuritis. Mult Scler Relat Disord 68, 104237. https://doi.org /10.1016/j.msard.2022.104237

 

Chen, J.J., Sotirchos, E.S., Henderson, A.D., Vasileiou, E.S., Flanagan, E.P., Bhatti, M.T., Jamali, S.,

Eggenberger, E.R., Dinome, M., Frohman, L.P., Arnold, A.C., Bonelli, L., Seleme, N., MejiaVergara, A.J., Moss, H.E., Padungkiatsagul, T., Stiebel-Kalish, H., Lotan, I., Hellmann, M.A., Hodge, D., Oertel, F.C., Paul, F., Saidha, S., Calabresi, P.A., Pittock, S.J., 2022b. OCT retinal nerve fiber layer thickness differentiates acute optic neuritis from MOG antibody-associated disease and

Multiple Sclerosis: RNFL thickening in acute  optic neuritis from MOGAD vs MS. Mult Scler Relat Disord 58, 103525. https://doi.org/10.1016/j.msard.2022.103525

 

Chen, J.L., Men, M., Naini, B.V., Tsui, E., 2022. IgG4-related hypertensive granulomatous anterior uveitis. Am J Ophthalmol Case Rep 26, 101465. https://doi.org/10.1016/j.ajoc.2022.101465

 

Chen, T., Roelofs, K.A., Rootman, D.B., 2023. Allergic conjunctivitis and contact dermatitis following silicone tube intubation. Can J Ophthalmol 58, e36–e38. https://doi.org/10.1016/j.jcjo.2022.06.017

 

Cheng, B.T., Kim, A.B., Nadimpalli, S., Pineles, S.L., Kurup, S.P., 2022. Association of Pediatric

Strabismus and Functional Impairment: A Cross-sectional Nationwide Analysis. J Pediatr

Ophthalmol Strabismus 1–9. https://doi.org/10.3928/01913913-20220728-01

 

Chew, L., Mohammadzadeh, V., Mohammadi, M., Toriz, V., Rosa, N., Gorin, M.B., Amini, N., NouriMahdavi, K., 2023. Measurement of the Inner Macular Layers for Monitoring of Glaucoma: Confounding Effects of Age-Related Macular Degeneration. Ophthalmol Glaucoma 6, 68–77. https://doi.org/10.1016/j.ogla.2022.06.006

 

Choo, C.H., Boto de Los Bueis, A., Chung, D.D., Aldave, A.J., 2022a. Confirmation of PRDX3

c.568G>C as the Genetic Basis of Punctiform and Polychromatic Pre-Descemet Corneal Dystrophy. Cornea 41, 779–781. https://doi.org/10.1097/ICO.0000000000002828

 

Choo, C.H., Chung, D.D., Ledwitch, K.V., Kassels, A., Meiler, J., Aldave, A.J., 2022b. Confirmation of association of TGFBI p.Ser591Phe mutation with variant lattice corneal dystrophy. Ophthalmic Genet 43, 530–533. https://doi.org/10.1080/13816810.2022.2050766

 

Ciulla, T.A., Kapik, B., Hu, A., Harris, A., Ip, M.S., Blodi, B., 2022. Anatomic Biomarkers of Macular

Edema Associated with Retinal Vein Occlusion. Ophthalmol Retina 6, 1206–1220. https://doi.org /10.1016/j.oret.2022.06.016

 

Cohen, L.M., Goldberg, R.A., Rootman, D.B., 2022a. Recurrence of Distensible Orbital Venous-dominant

Venolymphatic Malformations After Sclerotherapy Versus Embolization With Excision. Ophthalmic

Plast Reconstr Surg 38, 283–288. https://doi.org/10.1097/IOP.0000000000002085

 

Cohen, L.M., Ponce Mejia, L.L., Duckwiler, G.R., Goldberg, R.A., Rootman, D.B., 2022b. External carotid artery to ophthalmic artery flow associated with internal carotid artery stenosis. Orbit 1–7. https://doi.org/10.1080/01676830.2022.2149818

 

Cohen, L.M., Ponce Mejia, L.L., Duckwiler, G.R., Goldberg, R.A., Rootman, D.B., 2022c. External carotid artery to ophthalmic artery flow associated with internal carotid artery stenosis. Orbit 1–7. https://doi.org/10.1080/01676830.2022.2149818

 

Coleman, A.L., Edmands, S., 2022. Data and Diversity in the Development of Acute Water Quality

Criteria in the United States. Environ Toxicol Chem 41, 1333–1343. https://doi.org/10.1002/etc.5302

 

Coleman, A.L., Lum, F., 2022. Zafar et al.: Endophthalmitis rates among Medicare beneficiaries undergoing cataract surgery between 2011 and 2019 (Ophthalmology. 2022;129:250-257). Ophthalmology 129, e39–e40. https://doi.org/10.1016/j.ophtha.2021.12.013

 

Core, J.Q., Hua, P., Daniel, E., Grunwald, J.E., Jaffe, G., Maguire, M.G., Ying, G.-S., 2023. Thiazolidinedione use and retinal fluid in the comparison of age-related macular degeneration treatments trials. Br J Ophthalmol 107, 1000–1006. https://doi.org/10.1136/bjophthalmol2021-320665

 

Core, J.Q., Pistilli, M., Hua, P., Daniel, E., Grunwald, J.E., Toth, C.A., Jaffe, G.J., Martin, D.F., Maguire, M.G., Ying, G.-S., 2022. Predominantly Persistent Intraretinal Fluid in the Comparison of Agerelated Macular Degeneration Treatments Trials. Ophthalmol Retina 6, 771–785. https://doi.org /10.1016/j.oret.2022.03.024

 

Corradetti, G., Byon, I., Corvi, F., Cozzi, M., Staurenghi, G., Sadda, S.R., 2022. Retro mode illumination for detecting and quantifying the area of geographic atrophy in non-neovascular age-related macular degeneration. Eye (Lond) 36, 1560–1566. https://doi.org/10.1038/s41433-021-01670-3

 

Corvi, F., Corradetti, G., Wong, A., Pulido, J.S., Shields, C.L., Freund, K.B., Sarraf, D., Sadda, S.R.,

2022a. MULTIMODAL IMAGING OF A CHOROIDAL NEVUS WITH CAVERNS IN THE

SETTING OF PACHYCHOROID DISEASE. Retin Cases Brief Rep 16, 670–673. https://doi.org /10.1097/ICB.0000000000001138

 

Corvi, F., Juhn, A., Corradetti, G., Nguyen, T.V., Fawzi, A.A., Sarraf, D., Sadda, S.R., 2022b.

MULTIMODAL IMAGING OF CRB1 RETINITIS PIGMENTOSA WITH A PERIPHERAL

RETINAL TUMOR. Retin Cases Brief Rep 16, 407–410. https://doi.org/10.1097 /ICB.0000000000001058

 

Cruz, A.A.V., Equitério, B., Diniz, S.B., Garcia, D.M., Rootman, D.B., Goldberg, R.A., Galindo-Ferreiro,

A., Marqués-Fernández, V., Sales-Sanz, M., 2022. Upper Eyelid Contour Changes After Orbital

Decompression in Graves Orbitopathy. Ophthalmic Plast Reconstr Surg 38, 289–293. https://doi.org /10.1097/IOP.0000000000002093

 

Danese, A., Patergnani, S., Maresca, A., Peron, C., Raimondi, A., Caporali, L., Marchi, S., La Morgia, C.,

Del Dotto, V., Zanna, C., Iannielli, A., Segnali, A., Di Meo, I., Cavaliere, A., LebiedzinskaArciszewska, M., Wieckowski, M.R., Martinuzzi, A., Moraes-Filho, M.N., Salomao, S.R., Berezovsky, A., Belfort, R.J., Buser, C., Ross-Cisneros, F.N., Sadun, A.A., Tacchetti, C., Broccoli, V., Giorgi, C., Tiranti, V., Carelli, V., Pinton, P., 2022. Pathological mitophagy disrupts mitochondrial homeostasis in Leber’s hereditary optic neuropathy. Cell Rep 40, 111124. https://doi.org/10.1016 /j.celrep.2022.111124

 

De Arrigunaga, S., Akpek, E.K., Aldave, A.J., Mian, S.I., Zurakowski, D., Ciolino, J.B., 2023.

Prospective, Randomized, Multicenter, Double-Masked, Clinical Trial of Corneal Cross-Linking for

Boston Keratoprosthesis Carrier Tissue. Am J Ophthalmol 249, 39–48. https://doi.org/10.1016 /j.ajo.2022.12.017

 

De Gainza, A., Morales, E., Rabiolo, A., Yu, F., Afifi, A.A., Nouri-Mahdavi, K., Caprioli, J., 2022. A Metascore of Multiple Imaging Methods to Measure Long-Term Glaucoma Structural Progression.

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Salazar, D., Yu, F., Afifi, A., Nouri-Mahdavi, K., Caprioli, J., 2022. StructuralFunctional Glaucoma
        Progression Trajectory in 2-Dimensional Space. J Glaucoma 31, 250–260.
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Demer, J.L., 2022. Vertical Comitance of Hypertropia in Congenital and Acquired Superior Oblique

Palsy. J Neuroophthalmol 42, e240–e247. https://doi.org/10.1097/WNO.0000000000001301

 

Demer, J.L., Clark, R.A., 2022. Masquerading Superior Oblique Palsy. Am J Ophthalmol 242, 197–208. https://doi.org/10.1016/j.ajo.2022.05.017

 

den Hollander, A.I., Mullins, R.F., Orozco, L.D., Voigt, A.P., Chen, H.-H., Strunz, T., Grassmann, F.,

Haines, J.L., Kuiper, J.J.W., Tumminia, S.J., Allikmets, R., Hageman, G.S., Stambolian, D., Klaver, C.C.W., Boeke, J.D., Chen, H., Honigberg, L., Katti, S., Frazer, K.A., Weber, B.H.F., Gorin, M.B., 2022. Systems genomics in age-related macular degeneration. Exp Eye Res 225, 109248. https://doi.org/10.1016/j.exer.2022.109248

 

Do Rhee, K., Wang, Y., Ten Hoeve, J., Stiles, L., Nguyen, T.T.T., Zhang, X., Vergnes, L., Reue, K., Shirihai, O., Bok, D., Yang, X.-J., 2022. Ciliary neurotrophic factor-mediated neuroprotection involves enhanced glycolysis and anabolism in degenerating mouse retinas. Nat Commun 13, 7037. https://doi.org/10.1038/s41467-022-34443-x

 

Dong, P.N., Hang, D.T.T., Duong, N.T.N., Lien, M.T., Chen, A.C., Aldave, A.J., 2022. Infectious keratitis in Vietnam: etiology, organisms, and management at Vietnam National Eye Hospital. Int J Ophthalmol 15, 128–134. https://doi.org/10.18240/ijo.2022.01.19

 

Dos Santos, A., Lyu, N., Balayan, A., Knight, R., Zhuo, K.S., Sun, Y., Xu, J., Funderburgh, M.L.,

Funderburgh, J.L., Deng, S.X., 2022. Generation of Functional Immortalized Human Corneal

Stromal Stem Cells. Int J Mol Sci 23. https://doi.org/10.3390/ijms232113399

 

Dow, E.R., Hou, K., Ransome, S., Abbassi, S., Tsui, E., 2022. Posterior Uveitis Associated with Cemiplimab. Ocul Immunol Inflamm 30, 1211–1213. https://doi.org/10.1080 /09273948.2021.1872649

 

Ebeling, M.C., Fisher, C.R., Kapphahn, R.J., Stahl, M.R., Shen, S., Qu, J., Montezuma, S.R., Ferrington,

D.A., 2022a. Inflammasome Activation in Retinal Pigment Epithelium from Human Donors with

Age-Related Macular Degeneration. Cells 11. https://doi.org/10.3390/cells11132075

 

Ebeling, M.C., Geng, Z., Stahl, M.R., Kapphahn, R.J., Roehrich, H., Montezuma, S.R., Ferrington, D.A.,

Dutton, J.R., 2022b. Testing Mitochondrial-Targeted Drugs in iPSC-RPE from Patients with Age-

Related Macular Degeneration. Pharmaceuticals (Basel) 15. https://doi.org/10.3390/ph15010062

 

Falavarjani, K.G., Anvari, P., Sacconi, R., Querques, G., Sarraf, D., 2022. Retinal pigment epithelium apertures associated with subretinal fluid and acquired vitellifom lesions in non-neovascular agerelated macular degeneration. Can J Ophthalmol 57, e91–e94. https://doi.org/10.1016 /j.jcjo.2021.09.013

 

Fan, W., Fleming, A., Hemert, J.V., Wykoff, C.C., Brown, D.M., Robertson, G., Wang, K., Falavarjani,

K.G., Sadda, S.R., Ip, M., 2022a. RETINAL VASCULAR BED AREA IN EYES WITH RETINAL VEIN OCCLUSION ON ULTRA-WIDEFIELD FLUORESCEIN ANGIOGRAPHY: WAVE Study.

Retina 42, 1883–1888. https://doi.org/10.1097/IAE.0000000000003549

 

Fan, W., Nittala, M.G., Wykoff, C.C., Brown, D.M., Uji, A., Hemert, J.V., Fleming, A., Robertson, G.,

Sadda, S.R., Ip, M., 2022b. NEW BIOMARKER QUANTIFYING THE EFFECT OF ANTI-VEGF

THERAPY IN EYES WITH PROLIFERATIVE DIABETIC RETINOPATHY ON ULTRAWIDE

FIELD FLUORESCEIN ANGIOGRAPHY:  RECOVERY Study. Retina 42, 426–433. https://doi.org /10.1097/IAE.0000000000003358

 

Fan, W., Uji, A., Nittala, M., Wykoff, C.C., Brown, D., Fleming, A., Robertson, G., van Hemert, J., Sadda, S., Ip, M.S., 2022c. Retinal vascular bed area on ultra-wide field fluorescein angiography indicates the severity of diabetic retinopathy. Br J Ophthalmol 106, 1126–1131. https://doi.org /10.1136/bjophthalmol-2020-317488

 

Fan, W., Uji, A., Wykoff, C.C., Brown, D.M., van Hemert, J., Falavarjani, K.G., Wang, K., Sadda, S.R., Ip, M., 2023. Baseline retinal vascular bed area on ultra-wide field fluorescein angiography correlates with the anatomical outcome of diabetic macular oedema to ranibizumab  therapy: two-year analysis of the DAVE Study. Eye (Lond) 37, 678–683. https://doi.org/10.1038/s41433-021-01777-7

 

Figueiredo, N., Sarraf, D., Gunnemann, F., Sadda, S.R., Bansal, A., Berger, A.R., Wong, D.T., Kohly,

R.P., Kertes, P.J., Hillier, R.J., Muni, R.H., 2022. Longitudinal Assessment of Ellipsoid Zone

Recovery Using En Face Optical Coherence Tomography After Retinal Detachment Repair. Am J Ophthalmol 236, 212–220. https://doi.org/10.1016/j.ajo.2021.10.012

 

Fisher, C.R., Ebeling, M.C., Ferrington, D.A., 2022a. Quantification of mitophagy using mKeima-mito in cultured human primary retinal pigment epithelial cells. Exp Eye Res 217, 108981. https://doi.org /10.1016/j.exer.2022.108981

 

Fisher, C.R., Ebeling, M.C., Geng, Z., Kapphahn, R.J., Roehrich, H., Montezuma, S.R., Dutton, J.R.,

Ferrington, D.A., 2022b. Human iPSC- and Primary-Retinal Pigment Epithelial Cells for Modeling

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