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Optical coherence angiography

Optics Express · 2006 · Vol. 14(17) · pp. 7821–7821
Shuichi MakitaYoung-Joo HongMasahiro YamanariToyohiko YatagaiYoshiaki Yasuno

Abstract

Noninvasive angiography is demonstrated for the in vivo human eye. Three-dimensional flow imaging has been performed with high-speed spectral-domain optical coherence tomography. Sample motion is compensated by two algorithms. Axial motion between adjacent A-lines within one OCT image is compensated by the Doppler shift due to bulk sample motion. Axial displacements between neighboring images are compensated by a correlation-based algorithm. Three-dimensional vasculature of ocular vessels has been visualized. By integrating volume sets of flow images, two-dimensional images of blood vessels are obtained. Retinal and choroidal blood vessel images are simultaneously obtained by separating the volume set into retinal part and choroidal parts. These are corresponding to fluorescein angiogram and indocyanine angiogram.

Optical Coherence Tomography ApplicationsGlaucoma and retinal disordersRetinal Imaging and AnalysisOptical coherence tomographyOpticsDoppler effectBlood flowAngiographyRetinalCoherence (philosophical gambling strategy)Materials sciencePhysicsMedicine

Funding

  • University of Tsukuba
  • Japan Society for the Promotion of Science
  • Japan Science and Technology Agency
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607
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17.18
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