The role of documentation in the modern medico-legal and telemedicine era becomes even more critical. Documentation is important not only for management, monitoring and follow-up of the retinal diseases, but also serves an irreplaceable role in medical teaching, patient education and counselling. Until now, traditional fundus cameras captured only 30-50° of retina and the peripheral retina remained undocumented. The periphery of the retina is affected in a variety of retinal and choroidal disorders. This review aims to describe the utility of ultra-wide field imaging in various retinal disorders. Ultra-wide field imaging has made new observations in the normal population as well as in eyes with retinal disorders including vascular diseases, degenerative diseases, uveitis, age-related macular degeneration, retinal and choroidal tumors and hereditary retinal dystrophies. In this review, a literature search using the keywords “ultra-widefield imaging”, “widefield imaging”, and “peripheral retinal imaging” in English and non-English languages was done and the relevant articles were included. It not only facilitates assessing color images of the fundus, but also fluorescein angiography, indocyanine green angiography, fundus autofluorescence, and red and green free images. Ultra-wide field imaging enables us to delve into the retinal periphery in greater detail. Traditional fundus cameras capture only a part of the fundus even when montaging techniques are used. Axial resolution: 2.The peripheral retina is affected in a variety of retinal disorders. Scanning speed: 80 000 measurements per second Camera: Builit-in 12-megapixel CCD camera With the golden standard 14 optic nerve parameters and a new Rim to Disc and Rim Absence the description of ONH condition is quick and precise.Īdvanced view which provides combined information from Retina and Disc scan to integrate details of the Ganglion cells, RNFL, ONH in a wide field perspective for comprehensive analysis. Thus allowing a more precise diagnosis and mapping of any changes in the patient’s retina condition.Ĭomprehensive glaucoma analytical tools for quantification of the Nerve Fiber Layer, Ganglion layer and Optic Head with DDLS allow for the precise diagnosis and monitoring of glaucoma over time. Software automatically recognizes 8 retina layers. Single 3D Retina examination is enough to perform both Retina and Glaucoma analysis based on retinal scans. Available view modes present detailed photos of a single or both eyes as well as a time comparison of the fundus photos. Easy to use image processing tools such as RGB channel, brightness, contrast, gamma and sharpness adjusters used with filters deliver a stunning retinal image. An OCT scan is possible even on a 2.4 mm pupil. A Color Fundus image capturing is possible with a pupil as small as 3.3 mm. The advanced optical system ensures high quality imaging at as wide as 45° viewing angle. The REVO FC Fundus Camera is fully automated, safe and easy to use. What makes the REVO FC truly unique is its integrated non-mydriatic 12.3 Mpix Fundus Camera capable of capturing ultra-high quality and detailed color images. High quality OCT scanning and a comprehensive analysis of the retinal layers combined with a Fundus imaging make the examination versatile as never before. REVO FC offers all proven advantages of REVO systems with a cutting-edge color Fundus imaging for a new level of diagnostic certainty. Only for high quality OCT imaging including OCT-A As a combo providing simultaneous OCT and fundus images Now you can use the REVO FC in the way you need it: Capturing color fundus images of retina and OCT scanning of a retina in a single shot on one device saves both time and space. The combination of an All in One OCT technology with a Full Color Fundus Camera in one compact system gives you high quality OCT images and a detailed color image for a multipurpose diagnosis. REVO FC meets all requirements for modern optical tomographs.įundus Camera with the complete REVO 80 functionality The built-in 12.3 Mpix camera guarantees excellent image reproduction.
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