Atlas of Fundus Autofluorescence Imaging by Frank G. Holz, Steffen Schmitz-Valckenberg, Richard F.

By Frank G. Holz, Steffen Schmitz-Valckenberg, Richard F. Spaide, Alan C. Bird

This lavishly illustrated particular atlas presents a complete and up to date evaluation of FAF imaging in retinal ailments. It additionally compares FAF findings with different imaging suggestions comparable to fundus photo, fluorescein- and ICG angiography in addition to optical coherence tomography.
General ophthalmologists in addition to retina experts will locate this a really priceless consultant which illustrates regular FAF features of assorted retinal illnesses.

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Atlas of Fundus Autofluorescence Imaging

This lavishly illustrated specified atlas presents a entire and up to date review of FAF imaging in retinal ailments. It additionally compares FAF findings with different imaging ideas similar to fundus photo, fluorescein- and ICG angiography in addition to optical coherence tomography.
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J Opt Soc Am A Opt Image Sci Vis 23:521–538 35. Spaide, RF (2003) Fundus autofluorescence and age-related macular degeneration. Ophthalmology 110:392–399 36. 1) (2000). 1–2000. The Laser Institute of America, Orlando, FL, USA 37. Pokorny, J, Smith, VC, Lutze, M (1987) Aging of the human lens. Appl Opt 26:1437–1440 38. Savage, GL, Johnson, CA, Howard, DL (2001) A comparison of noninvasive objective and subjective measurements of the optical density of human ocular media. Optom Vis Sci 78:386–395 39.

2003) A2E, a byproduct of the visual cycle. Vision Res 43:2983–2990 7. Sparrow, JR, Nakanishi, K, Parish, CA (2000) The lipofuscin fluorophore A2E mediates blue light-induced damage to retinal pigmented epithelial cells. Invest Ophthalmol Vis Sci 41:1981–1989 8. Sparrow, JR, Zhou, J, Ben-Shabat, S et al. (2002) Involvement of oxidative mechanisms in blue-light-induced damage to A2E-laden RPE. Invest Ophthalmol Vis Sci 43:1222–1227 9. Sparrow, JR, Zhou, J, Cai, B (2003) DNA is a target of the photodynamic effects elicited in A2E-laden RPE by blue-light illumination.

Higher NIR-FAF Fig. 6 Autofluorescence images obtained with a confocal scanning laser ophthalmoscope (HRAc, Heidelberg Engineering) using 488 nm short-wavelength and 787 nm near-infrared as excitation wavelengths. a Images from a 44-year-old subject with normal retinal status. b Images from an 81-year-old age-related macular degeneration patient with drusen and early atrophic changes in the fovea. Hyperpigmentation exhibits high autofluorescence in both imaging modes Chapter 2 Origin of Fundus Autofluorescence 25 also emanates from choroidal pigment (nevi, outer layers), from the pigment epithelium and stroma of the iris, and from hyperpigmentation (Fig.

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