Real-time assessment of retinal blood flow with ultrafast acquisition by color Doppler Fourier domain optical coherence tomography
Top Cited Papers
- 17 November 2003
- journal article
- Published by Optica Publishing Group in Optics Express
- Vol. 11 (23) , 3116-3121
- https://doi.org/10.1364/oe.11.003116
Abstract
We interfaced color Doppler Fourier domain optical coherence tomography (CD-FDOCT) with a commercial OCT system to perform in vivo studies of human retinal blood flow in real time. FDOCT does not need reference arm scanning and records one full depth and Doppler profile in parallel. The system operates with an equivalent A-scan rate of 25 kHz and allows real time imaging of the color encoded Doppler information together with the tissue morphology at a rate of 2–4 tomograms (40×512 pixel) per second. The recording time of a single tomogram (160×512 data points) is only 6,4ms. Despite the high detection speed we achieve a system sensitivity of 86dB using a beam power of 500µW at the cornea. The fundus camera allows simultaneous view for selection of the region of interest. We observe bi-directional blood flow and pulsatility of blood velocity in retinal vessels with a Doppler detection bandwidth of 12.5 kHz and a longitudinal velocity sensitivity in tissue of 200µm/s.Keywords
This publication has 12 references indexed in Scilit:
- High speed, wide velocity dynamic range Doppler optical coherence tomography (Part II): Imaging in vivo cardiac dynamics of Xenopus laevisOptics Express, 2003
- Real-time in vivo ophthalmic imaging by ultrafast spectral optical coherence tomographyPublished by SPIE-Intl Soc Optical Eng ,2003
- Performance of fourier domain vs time domain optical coherence tomographyOptics Express, 2003
- In vivo imaging of human retinal flow dynamics by color Doppler optical coherence tomography.Archives of Ophthalmology (1950), 2003
- The impact of ocular blood flow in glaucomaProgress in Retinal and Eye Research, 2002
- Doppler standard deviation imaging for clinical monitoring of in vivo human skin blood flowOptics Letters, 2000
- Optical Doppler velocimetry at various retinal vessel depths by variation of the source coherence length.Applied Optics, 2000
- Ocular blood flow and associated functional deviations in diabetic retinopathyDiabetologia, 1999
- A Hemodynamic Model of the Pathogenesis of Age-related Macular DegenerationAmerican Journal of Ophthalmology, 1997
- Noninvasive imaging of in vivo blood flow velocity using optical Doppler tomographyOptics Letters, 1997