Visualizing the Choriocapillaris Under Drusen: Comparing 1050-nm Swept-Source Versus 840-nm Spectral-Domain Optical Coherence Tomography Angiography
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Author(s) • • • • • • • • •
Lane, Mark
Novais, Eduardo A.
Louzada, Ricardo N.
Cole, Emily D.
Lee, ByungKun
Keane, Pearse A.
Denniston, Alastair K.
Witkin, André J.
Baumal, Caroline R.
Duker, Jay S.
Date Issued
August 2016
Journal
Investigative Opthalmology & Visual Science
Publisher
Association for Research in Vision and Ophthalmology (ARVO)
Citation
Lane, Mark, Eric M. Moult, Eduardo A. Novais, Ricardo N. Louzada, Emily D. Cole, ByungKun Lee, Lennart Husvogt, et al. “Visualizing the Choriocapillaris Under Drusen: Comparing 1050-Nm Swept-Source Versus 840-Nm Spectral-Domain Optical Coherence Tomography Angiography.” Invest. Ophthalmol. Vis. Sci. 57, no. 9 (August 17, 2016): OCT585.
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Final published version
Abstract
Purpose: To investigate the appearance of choriocapillaris (CC) flow under drusen by comparing long-wavelength (1050 nm) swept-source optical coherence tomography (SS-OCT) angiography with shorter-wavelength (840 nm) spectral-domain (SD) OCT angiography.
Methods: Patients with drusen imaged on both devices on the same day were selected and graded. Ambiguous OCT angiography (OCTA) signal loss was defined as low OCTA signal on the en face OCTA CC image that also had low OCT signal in the corresponding area on the en face OCT CC image and OCT B-scans. Unambiguous OCTA signal loss was defined as low OCTA signal on the en face OCTA CC image that did not have low OCT signal in the corresponding area on the en face OCT CC image and OCT B-scans. False-positive flow impairment on SS-OCTA was defined as ambiguous OCTA signal loss on SS-OCTA but no OCTA signal loss on SD-OCTA. False-positive flow impairment on SD-OCTA was defined as ambiguous OCTA signal loss on SD-OCTA but no OCTA signal loss on SS-OCTA.
Results: Nine eyes from seven patients were enrolled, 23 drusen were analyzed. On 840-nm SD-OCTA, 17 drusen (73.9%) exhibited OCTA signal loss. Fourteen (82.4%) were classified as ambiguous, and three (17.6%) were classified as unambiguous; 10 (58.8%) were classified as having false-positive flow impairment. On 1050-nm SS-OCTA, seven drusen (30.4%) exhibited OCTA signal loss and were classified as unambiguous; none were classified as having false-positive flow impairment.
Conclusions: Results showed that 1050-nm SS-OCTA appears less prone to producing areas of false-positive flow impairment under drusen.
MIT Department
Massachusetts Institute of Technology. Institute for Medical Engineering & Science
Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
Massachusetts Institute of Technology. Research Laboratory of Electronics
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DOI of Published Version
https://doi.org/10.1167/iovs.15-18915