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Optical Coherence Tomography

Science · 1991 · Vol. 254(5035) · pp. 1178–1181
David HuangEric A. SwansonCharles P. LinJoel S. SchumanWilliam G. StinsonWarren ChangMichael R. HeeThomas FlotteKenton W. GregoryCarmen A. PuliafitoJames G. Fujimoto

Abstract

A technique called optical coherence tomography (OCT) has been developed for noninvasive cross-sectional imaging in biological systems. OCT uses low-coherence interferometry to produce a two-dimensional image of optical scattering from internal tissue microstructures in a way that is analogous to ultrasonic pulse-echo imaging. OCT has longitudinal and lateral spatial resolutions of a few micrometers and can detect reflected signals as small as approximately 10(-10) of the incident optical power. Tomographic imaging is demonstrated in vitro in the peripapillary area of the retina and in the coronary artery, two clinically relevant examples that are representative of transparent and turbid media, respectively.

Glaucoma and retinal disordersOptical Coherence Tomography ApplicationsRetinal Imaging and AnalysisOptical coherence tomographyOpticsInterferometryTomographyCoherence (philosophical gambling strategy)Tomographic reconstructionMaterials scienceBiomedical engineeringPhysicsMedicine

MeSH terms

Coronary DiseaseCoronary VesselsHumansImage Processing, Computer-AssistedRetinal DiseasesTomographyIn Vitro Techniques
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