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WGC-2021

6.10.2 Posterior segment (35)

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Display only abstracts from IGR 20-3 in classification 6.10.2 Posterior segment

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82107 Anterior Optic Nerve Head Perfusion is Dependent on Adjacent Parapapillary Choroidal perfusion
Lee KM; Kim JM; Lee EJ; Kim TW
Scientific reports 2019; 9: 10999 (IGR: 20-4)


81444 New Ocular Findings in a Case of Chronic Granulomatous Disease in a Child
Khundkar T; Panarelli J; Shulman J
Ophthalmic surgery, lasers & imaging retina 2019; 50: 459-461 (IGR: 20-3)


72909 Parapapillary Choroidal Microvasculature Dropout in Glaucoma: A Comparison between Optical Coherence Tomography Angiography and Indocyanine Green Angiography
Lee EJ
Ophthalmology 2017; 124: 1209-1217 (IGR: 18-4)


72627 Choroidal infarction in a glaucoma patient with Flammer syndrome: a case report with a long term follow-up
Terelak-Borys B; Grabska-Liberek I
BMC Ophthalmology 2017; 17: 23 (IGR: 18-4)


72909 Parapapillary Choroidal Microvasculature Dropout in Glaucoma: A Comparison between Optical Coherence Tomography Angiography and Indocyanine Green Angiography
Lee KM; Lee SH
Ophthalmology 2017; 124: 1209-1217 (IGR: 18-4)


72627 Choroidal infarction in a glaucoma patient with Flammer syndrome: a case report with a long term follow-up
Piekarniak-Wozniak A; Konieczka K
BMC Ophthalmology 2017; 17: 23 (IGR: 18-4)


72909 Parapapillary Choroidal Microvasculature Dropout in Glaucoma: A Comparison between Optical Coherence Tomography Angiography and Indocyanine Green Angiography
Kim TW
Ophthalmology 2017; 124: 1209-1217 (IGR: 18-4)


61157 Retinal vein-to-vein anastomoses in Sturge-Weber syndrome documented by ultra-widefield fluorescein angiography
Quan AV
Journal of AAPOS 2015; 19: 270-272 (IGR: 17-1)


60894 Peripheral retinal vasculopathy in childhood glaucoma
Kim HY
Retina (Philadelphia, Pa.) 2015; 35: 1028-1035 (IGR: 17-1)


61157 Retinal vein-to-vein anastomoses in Sturge-Weber syndrome documented by ultra-widefield fluorescein angiography
Moore GH
Journal of AAPOS 2015; 19: 270-272 (IGR: 17-1)


60894 Peripheral retinal vasculopathy in childhood glaucoma
Hodapp E; Grajewski AL
Retina (Philadelphia, Pa.) 2015; 35: 1028-1035 (IGR: 17-1)


61157 Retinal vein-to-vein anastomoses in Sturge-Weber syndrome documented by ultra-widefield fluorescein angiography
Tsui I
Journal of AAPOS 2015; 19: 270-272 (IGR: 17-1)


60894 Peripheral retinal vasculopathy in childhood glaucoma
Sarraf D; John VJ; Hess DJ; Berrocal AM
Retina (Philadelphia, Pa.) 2015; 35: 1028-1035 (IGR: 17-1)


60794 Optic disc hemorrhage is related to various hemodynamic findings by disc angiography
Park HY; Jeong HJ; Kim YH; Park CK
PLoS ONE 2015; 10: e0120000 (IGR: 16-4)


53583 Correlation between optic disc microcirculation in glaucoma measured with laser speckle flowgraphy and fluorescein angiography, and the correlation with mean deviation
Aizawa N; Kunikata H; Yokoyama Y; Nakazawa T
Clinical and Experimental Ophthalmology 2014; 42: 293-294 (IGR: 15-2)


50373 Optic disc fluorescein leakage and intraocular pressure in primary open-angle glaucoma
Plange N; Bienert M; Remky A; Arend KO
Current Eye Research 2012; 37: 508-512 (IGR: 14-2)


48821 Peripheral retinal vascular abnormalities in primary infantile glaucoma
Shane TS; Berrocal AM; Hodapp EA; Grajewski AL; Hess DJ
Ophthalmic Surgery Lasers and Imaging 2011; 42: e144-146 (IGR: 14-1)


46357 Fluorescein angiography: insight and serendipity a half century ago
Marmor MF; Ravin JG
Archives of Ophthalmology 2011; 129: 943-948 (IGR: 13-3)


26967 In vivo assessment of retinal vascular wall dimensions.
Fischer MD; Huber G; Feng Y; Tanimoto N; Mühlfriedel R; Beck SC; Tröger E; Kernstock C; Preising MN; Lorenz B
Investigative Ophthalmology and Visual Science 2010; 51: 5254-5259 (IGR: 12-4)


27547 Fluorescein leakage of the optic disc: time course in primary open-angle glaucoma
Plange N; Kaup M; Doehmen B; Remky A; Arend KO
Ophthalmic & physiological optics : the journal of the British College of Ophthalmic Opticians 2010; 30: 315-320 (IGR: 12-4)


26970 Correlation of histologic and clinical images to determine the diagnostic value of fluorescein angiography for studying retinal capillary detail.
Mendis KR; Balaratnasingam C; Yu P; Barry CJ; McAllister IL; Cringle SJ; Yu DY
Investigative Ophthalmology and Visual Science 2010; 51: 5864-5869 (IGR: 12-4)


26518 Clinical features of hypoperfusion retinopathy complicating neovascular glaucoma
Zhou B; Wei S
Neuro-Ophthalmology 2010; 34: 279 (IGR: 12-3)


23925 Hyperfluorescence of the optic disc with indocyanine green angiography
Maaijwee K; van den Biesen PR; van Meurs JC
Eye 2009; 23: 819-821 (IGR: 11-2)


22675 Indocyanine green angiography in experimental choroidal circulatory disturbance
Nishikawa M; Matsunaga H; Takahashi K; Matsumura M
Ophthalmic Research 2009; 1: 53-58 (IGR: 11-1)


21837 Fractal analysis of fluoroangiographic patterns in anterior ischaemic optic neuropathy and optic neuritis: A pilot study
Traversi C; Bianciardi G; Tasciotti A; Berni E; Nuti E; Luzi P; Tosi GM
Clinical and Experimental Ophthalmology 2008; 36: 323-328 (IGR: 10-3)



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