Paper
2 November 2001 Wide-field optical coherence tomography: imaging of biological tissues at 1220 nm
Edouard Bordenave, Emmanuel Abraham, Gediminas Jonusauskas, Noriaki Tsurumachi, Jean Oberle, Claude Rulliere, P. E. Minot, M. Lassegues, J. E. Surleve Bazeille
Author Affiliations +
Abstract
A two-dimensional optical coherence tomography technique has been developed in order to obtain multiple longitudinal slices of a biological sample directly, in a single Z-scan. The system is based on a femtosecond Cr4+:Forsterite laser and an infrared camera for wide-field imaging of the sample with a depth resolution of 9 micrometers . With this imaging apparatus, we investigated biological tissues such as human skin, human tooth and a mouse ear to observe the different constitutive tissues of the samples.
© (2001) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Edouard Bordenave, Emmanuel Abraham, Gediminas Jonusauskas, Noriaki Tsurumachi, Jean Oberle, Claude Rulliere, P. E. Minot, M. Lassegues, and J. E. Surleve Bazeille "Wide-field optical coherence tomography: imaging of biological tissues at 1220 nm", Proc. SPIE 4431, Photon Migration, Optical Coherence Tomography, and Microscopy, (2 November 2001); https://doi.org/10.1117/12.447397
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KEYWORDS
Optical coherence tomography

Tissues

Imaging systems

Teeth

Ear

Image resolution

Coherence imaging

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