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Detailed Vascular Anatomy of the Human Retina by Projection-Resolved Optical Coherence Tomography Angiography.
Campbell, J P; Zhang, M; Hwang, T S; Bailey, S T; Wilson, D J; Jia, Y; Huang, D.
Affiliation
  • Campbell JP; Casey Eye Institute, Oregon Health &Science University, 3375 SW Terwilliger Blvd, Portland, OR 97239 USA.
  • Zhang M; Casey Eye Institute, Oregon Health &Science University, 3375 SW Terwilliger Blvd, Portland, OR 97239 USA.
  • Hwang TS; Casey Eye Institute, Oregon Health &Science University, 3375 SW Terwilliger Blvd, Portland, OR 97239 USA.
  • Bailey ST; Casey Eye Institute, Oregon Health &Science University, 3375 SW Terwilliger Blvd, Portland, OR 97239 USA.
  • Wilson DJ; Casey Eye Institute, Oregon Health &Science University, 3375 SW Terwilliger Blvd, Portland, OR 97239 USA.
  • Jia Y; Casey Eye Institute, Oregon Health &Science University, 3375 SW Terwilliger Blvd, Portland, OR 97239 USA.
  • Huang D; Casey Eye Institute, Oregon Health &Science University, 3375 SW Terwilliger Blvd, Portland, OR 97239 USA.
Sci Rep ; 7: 42201, 2017 02 10.
Article in En | MEDLINE | ID: mdl-28186181
Optical coherence tomography angiography (OCTA) is a noninvasive method of 3D imaging of the retinal and choroidal circulations. However, vascular depth discrimination is limited by superficial vessels projecting flow signal artifact onto deeper layers. The projection-resolved (PR) OCTA algorithm improves depth resolution by removing projection artifact while retaining in-situ flow signal from real blood vessels in deeper layers. This novel technology allowed us to study the normal retinal vasculature in vivo with better depth resolution than previously possible. Our investigation in normal human volunteers revealed the presence of 2 to 4 distinct vascular plexuses in the retina, depending on location relative to the optic disc and fovea. The vascular pattern in these retinal plexuses and interconnecting layers are consistent with previous histologic studies. Based on these data, we propose an improved system of nomenclature and segmentation boundaries for detailed 3-dimensional retinal vascular anatomy by OCTA. This could serve as a basis for future investigation of both normal retinal anatomy, as well as vascular malformations, nonperfusion, and neovascularization.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Retina / Retinal Vessels / Angiography / Choroid / Tomography, Optical Coherence Limits: Humans Language: En Journal: Sci Rep Year: 2017 Document type: Article Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Retina / Retinal Vessels / Angiography / Choroid / Tomography, Optical Coherence Limits: Humans Language: En Journal: Sci Rep Year: 2017 Document type: Article Country of publication: United kingdom