Klin Monbl Augenheilkd 2016; 233(01): 89-106
DOI: 10.1055/s-0033-1358211
Augenheilkunde up2date
Georg Thieme Verlag KG Stuttgart · New York

Spektrale Reflexionsfotografie des Augenhintergrundes: klinische Beurteilung

Spectral Reflectance Retinal Imaging: Clinical Evaluation
S. Kellner
1   Zentrum für seltene Netzhauterkrankungen, AugenZentrum Siegburg, MVZ ADTC Siegburg GmbH, Siegburg, Deutschland
2   RetinaScience, Bonn, Deutschland
,
S. Weinitz
1   Zentrum für seltene Netzhauterkrankungen, AugenZentrum Siegburg, MVZ ADTC Siegburg GmbH, Siegburg, Deutschland
2   RetinaScience, Bonn, Deutschland
,
G. Farmand
1   Zentrum für seltene Netzhauterkrankungen, AugenZentrum Siegburg, MVZ ADTC Siegburg GmbH, Siegburg, Deutschland
,
U. Kellner
1   Zentrum für seltene Netzhauterkrankungen, AugenZentrum Siegburg, MVZ ADTC Siegburg GmbH, Siegburg, Deutschland
2   RetinaScience, Bonn, Deutschland
› Author Affiliations
Further Information

Publication History

Publication Date:
15 December 2015 (online)

Ziel dieses Artikels sind grundsätzliche Überlegungen zum Einsatz der spektralen Reflexionsfotografie. Dabei ist jede diagnostische Strategie individuell, und der Auswertungsprozess erlebt mit wachsender Erfahrung und Weiterentwicklung der Technik einen kontinuierlichen Wandel.

 
  • Literatur

  • Theelen T, Berendschot TT, Hoyng CB. et al. Near-infrared reflectance imaging of neovascular age-related macular degeneration. Graefes Arch Clin Exp Ophthalmol 2009; 247: 1625-1633
  • Charbel Issa P, Finger RP, Holz FG. et al. Multimodal imaging including spectral domain OCT and confocal near infrared reflectance for characterization of outer retinal pathology in pseudoxanthoma elasticum. Invest Ophthalmol Vis Sci 2009; 50: 5913-5918
  • Schmitz-Valckenberg S, Steinberg JS, Fleckenstein M. et al. Combined confocal scanning laser ophthalmoscopy and spectral-domain optical coherence tomography imaging of reticular drusen associated with age-related macular degeneration. Ophthalmology 2010; 117: 1169-1176
  • Freund KB, Laud K, Lima LH. et al. Acquired vitelliform lesions: correlation of clinical findings and multiple imaging analyses. Retina 2011; 31: 13-25
  • Ueda-Arakawa N, Ooto S, Tsujikawa A. et al. Sensitivity and specificity of detecting reticular pseudodrusen in multimodal imaging in Japanese patients. Retina 2013; 33: 490-497
  • Reznicek L, Dabov S, Kayat B. et al. Scanning laser ‘en face’ retinal imaging of epiretinal membranes. Saudi J Ophthalmol 2014; 28: 134-138
  • Charbel Issa P, Berendschot TT, Staurenghi G. et al. Confocal blue reflectance imaging in type 2 idiopathic macular telangiectasia. Invest Ophthalmol Vis Sci 2008; 49: 1172-1177
  • Sallo FB, Leung I, Chung M. et al.; on behalf of the MacTel Study Group. Retinal crystals in type 2 idiopathic macular telangiectasia. Ophthalmology 2011; 118: 2461-2467
  • Querques G, Georges A, Ben Moussa N. et al. Appearance of regressing drusen on optical coherence tomography in age-related macular degeneration. Ophthalmology 2014; 121: 173-179
  • Alten F, Clemens CR, Heiduschka P. et al. Characterisation of reticular pseudodrusen and their central target aspect in multi-spectral, confocal scanning laser ophthalmoscopy. Graefes Arch Clin Exp Ophthalmol 2014; 252: 715-721
  • Ben Moussa N, Georges A, Capuano V. et al. MultiColor imaging in the evaluation of geographic atrophy due to age-related macular degeneration. Br J Ophthalmol 2015; 99: 842-847
  • De Bats F, Mathis T, Mauget-Faÿsse M. et al. Prevalence of reticular pseudodrusen in age-related macular degeneration using multimodal imaging. 2015 [Epub ahead of print].
  • Pang CE, Freund KB. Ghost maculopathy: an artifact on near-infrared reflectance and multicolor™ imaging masquerading as chorioretinal pathology. Am J Ophthalmol 2014; 158: 171-178
  • Yu S, Bellone D, Lee SE. et al. Multimodal imaging in foveal red spot syndrome. Retin Cases Brief Rep 2015; 9: 97-101
  • Schwartz S, Gonzalez CL, Bhandari R. et al. Retina evaluation with nonmydriatic ultrawide-field color imaging after cataract extraction surgeries in asymptomatic patients. Ophthalmic Surg Lasers Imag Retina 2015; 46: 50-55
  • Oishi A, Hidaka J, Yoshimura N. Quantification of the image obtained with a wide-field scanning ophthalmoscope. Invest Ophthalmol Vis Sci 2014; 55: 2424-2431
  • Lengyel I, Csutak A, Florea D. et al. A population-based ultra-widefield digital image grading study for age-related macular degeneration-like lesions at the peripheral retina. Ophthalmology 2015; 122: 1340-1347
  • Pedinielli A, Souied EH, Perrenoud F. et al. In vivo visualization of perforating vessels and focal scleral ectasia in pathological myopia. Invest Ophthalmol Vis Sci 2013; 54: 7637-7643
  • Gallego-Pinazo R, Sherman J, Yannuzzi LA. et al. Choroidal lesions in neurofibromatosis detected by multispectral imaging. Retin Cases Brief Rep 2013; 7: 176-178