Scinovex
article Open AccessTop 1% cited

Ultrahigh-resolution, high-speed, Fourier domain optical coherence tomography and methods for dispersion compensation

Optics Express · 2004 · Vol. 12(11) · pp. 2404–2404
Maciej WojtkowskiVivek J. SrinivasanTony H. KoJames G. FujimotoAndrzej KowalczykJay S. Duker

Abstract

Ultrahigh-resolution optical coherence tomography uses broadband light sources to achieve axial image resolutions on the few micron scale. Fourier domain detection methods enable more than an order of magnitude increase in imaging speed and sensitivity, thus overcoming the sensitivity limitations inherent in ultrahigh-resolution OCT using standard time domain detection. Fourier domain methods also provide direct access to the spectrum of the optical signal. This enables automatic numerical dispersion compensation, a key factor in achieving ultrahigh image resolutions. We present ultrahigh-resolution, high-speed Fourier domain OCT imaging with an axial resolution of 2.1 ìm in tissue and 16,000 axial scans per second at 1024 pixels per axial scan. Ultrahigh-resolution spectral domain OCT is shown to provide a ~100x increase in imaging speed when compared to ultrahigh-resolution time domain OCT. In vivo imaging of the human retina is demonstrated. We also present a general technique for automatic numerical dispersion compensation, which is applicable to spectral domain as well as swept source embodiments of Fourier domain OCT.

Optical Coherence Tomography ApplicationsRetinal and Macular SurgeryRetinal Diseases and TreatmentsOptical coherence tomographyOpticsFourier transformFrequency domainImage resolutionResolution (logic)Dispersion (optics)Fourier analysisPhysicsMaterials science
Citations
1,029
FWCI
38.94
field-weighted impact
References
43
Percentile
100%
vs. same field & year
Citations per year
Cited by
The Development, Commercialization, and Impact of Optical Coherence Tomography
Investigative Ophthalmology & Visual Science · 2016 · 458 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.