[13] | Choroidal vascular alterations evaluated by ultra-widefield indocyanine green angiography in central serous chorioretinopathy (S Jeong, W Kang, D Noh van Hemert, J and M Sagong), In Graefes Arch Clin Exp Ophthalmol, volume 260, 2022. |
[12] | Retinal vascular bed area on ultra-wide field fluorescein angiography indicates the severity of diabetic retinopathy (Fan, W, Uji, A, Nittala, M, Wykoff, CC, Brown, D, Fleming, A, Robertson, G, van Hemert, J, Sadda, S and Ip, M S), In Br J Ophthalmol, 2021. |
[11] | Macular Microvascular Changes and Their Correlation With Peripheral Nonperfusion in Branch Retinal Vein Occlusion (Ryu, G, Park, D, Lim, J, van Hemert, J and Sagong, M), In Am J Ophthalmol, volume 225, 2021. |
[10] | Retinal vascular caliber association with nonperfusion and diabetic retinopathy severity depends on vascular caliber measurement location (Ashraf, M, Shokrollahi, S, Pisig, AU, Sampani, K, Abdelal, O, Cavallerano, JD, Robertson, G, Fleming, A, van Hemert, J, Pitoc, CM, Sun, JK, Aiello, LP and Silva, PS), In Ophthalmol Retina, 2020. |
[9] | Distribution and Location of Vortex Vein Ampullae in Healthy Human Eyes as Assessed by Ultra-Widefield Indocyanine Green Angiography (Verma, A, Maram, J, Alagorie, AR, Gupta Nittala, M, van Hemert, J, Keane, D, Carnevale, J, Bell, D, Singer, M and Sadda, SR), In Ophthalmol Retina, volume 4, 2020. |
[8] | Peripheral extent of the choroidal circulation by ultra-widefield indocyanine green angiography in healthy eyes (Verma, A, Maram, J, Alagorie, AR, van Hemert, J, Bell, DJ, Singer, M, Keane, D, Carnevale, J, Nittala, M and Sadda, SR), In Br J Ophthalmol, 2020. |
[7] | Classification of Regions of Nonperfusion on Ultra-widefield Fluorescein Angiography in patients with Diabetic Macular Edema (Fang, M, Fan, W, Shi, Y, Ip, MS, Wykoff, CC, Wang, K, Falavarjani, KG, Brown, DM, van Hemert, J and Sadda, SR), In Am J Ophthalmol, Elsevier, 2019. |
[6] | Distribution of Non-perfusion and Neovascularization on Ultra-Wide Field Fluorescein Angiography in Proliferative Diabetic Retinopathy (RECOVERY Study): Report 1 (Fan, W, Nittala, MG, Velaga, SB, Hirano, T, Wykoff, CC, Ip, M, Lampen, SIR, van Hemert, J, Fleming, A, Verhoek, M and Sadda, SR), In Am J Ophthalmol, 2019. |
[5] | Relationship Between Retinal Fractal Dimension and Non-perfusion in Diabetic Retinopathy on Ultra-Wide Field Fluorescein Angiography (Fan, W, Nittala, MG, Fleming, A, Robertson, G, Uji, A, Wykoff, CC, Brown, DM, van Hemert, J, Ip, M, Wang, K, Falavarjani, KG, Singer, M, Sagong, M and Sadda, SR), In Am J Ophthalmol, 2019. |
[4] | Changes in retinal ischaemic index correlate with recalcitrant macular oedema in retinal vein occlusion: WAVE study (Kwon, S, Wykoff, CC, Brown, DM, van Hemert, J, Fan, W and Sadda, SR), In Br J Ophthalmol, BMJ Publishing Group Ltd, 2018. |
[3] | Precise Measurement of Retinal Vascular Bed Area and Density on Ultra-wide Fluorescein Angiography in Normal Subjects (Fan, W, Uji, A, Borrelli, E, Singer, M, Sagong, M, van Hemert, J and Sadda, SR), In Am J Ophthalmol, Elsevier, volume 188, 2018. |
[2] | Distribution of Nonperfusion Area on Ultra-widefield Fluorescein Angiography in Eyes With Diabetic Macular Edema: DAVE Study (Fan, W, Wang, K, Ghasemi Falavarjani, K, Sagong, M, Uji, A, Ip, M, Wykoff, CC, Brown, DM, van Hemert, J and Sadda, SR), In Am J Ophthalmol, volume 180, 2017. |
[1] | Measuring the precise area of peripheral retinal non-perfusion using ultra-widefield imaging and its correlation with the ischaemic index (Tan, CS, Chew, MC, van Hemert, J, Singer, MA, Bell, D and Sadda, SR), In Br J Ophthalmol, volume 100, 2016. |