By Igor Kozak, J. Fernando Arevalo

ISBN-10: 3319178636

ISBN-13: 9783319178639

ISBN-10: 3319178644

ISBN-13: 9783319178646

Written by means of specialists within the box of ophthalmology, this new textual content assists in figuring out new imaging expertise and the scientific info it might probably offer. It permits the reader to check quite a few photos of assorted pathologies and will be of curiosity to retina experts and ophthalmologists. Retinal imaging has gone through dramatic adjustments within the final decade, characterised by way of continually bettering snapshot solution, such a lot particularly, because it applies to macular illnesses, due to ever evolving optical coherence tomography. although, imaging retina outdoor of the vascular arcades has come far with creation of recent cameras and lenses. the main profound swap has been the creation of wide-angle angiography, which has proven pathologies formerly no longer obvious or suspected and offers upward push to new theories of pathophysiology of a few retinal illnesses. realizing this new imaging expertise and the medical details it might probably supply calls for a foundation of information and event in associating the findings with different medical symptoms within the eye and the remainder of the physique. Atlas of Wide-Field Retinal Angiography and Imaging is helping with this event via permitting the reader to study a variety of photos of varied pathologies and analyzes angiographic findings within the retinal outer edge. in addition, as this expertise more and more fills ophthalmologists’ workplaces world wide, this publication will turn out to be a useful source, written by way of specialists within the box for retina experts and ophthalmologists.​

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Extra resources for Atlas of Wide-Field Retinal Angiography and Imaging

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Br J Ophtholmol. 1953;37:65–9. 19. Novotny HR, Alvis DL. A method of photographing fluorescence in circulating blood in the human retina. Circulation. 1961;24:82–6. 20. Pomerantzeff O. Wide-angle noncontact and small-angle contact cameras. Invest Ophthalmol Vis Sci. 1980;19:973–9. 21. Witmer MT, Kiss S. Wide-field imaging of the retina. Surv Ophthalmol. 2013;58:143–54. 22. Shields C, Materna M, Shields J. Panoramic imaging of the ocular fundus. Arch Ophtholmol. 2003;121:1603–7. 23. Patel M, Kiss S.

Clinically, a diagnosis of optic nerve drusen was made a Fig. 2 FAF image of a patient who had been diagnosed with AMD. In conjunction with optical coherence tomography (OCT) images, the hyperfluorescent spot in the center was indicative of pseudovitelliform material, making a diagnosis of pattern dystrophy more likely b Fig. 3 A myopic fundus on FAF (a) and color fundus (b). The hypofluorescent ring around the optic nerve head represents peripapillary RPE atrophy.

Yannuzzi LA, Slakter JS, Sorenson JA, Guyer DR, Orlock DA. Digital indocyanine green videoangiography and choroidal neovascularization. Retina. 1992;12:191–223. 7. Guyer DR, Puliafito CA, Monés JM, Friedman E, Chang W, Verdooner SR. Digital indocyanine-green angiography in chorioretinal disorders. Ophthalmology. 1992;99:287–91. 8. Miwa M, Shikayama T. ICG fluorescence imaging and its medical applications. In: Ye S, Zhang G, Ni J, editors. Proceedings of the 2008 international conference on optical instruments and technology: optoelectronic measurement technology and applications, vol.

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Atlas of Wide-Field Retinal Angiography and Imaging by Igor Kozak, J. Fernando Arevalo


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