Spectroscopic thermo-elastic optical coherence tomography for tissue characterization

Author:

Doug Deen Aaron1ORCID,Van Beusekom Heleen M. M.1,Pfeiffer Tom2,Stam Mathijs1,De Kleijn Dominique3,Wentzel Jolanda1,Huber Robert2ORCID,Van Der Steen Antonius F. W.145,Van Soest Gijs1,Wang Tianshi1

Affiliation:

1. Erasmus University Medical Center

2. Universität zu Lübeck

3. University Medical Center Utrecht

4. Chinese Academy of Sciences

5. Delft University of Technology

Abstract

Optical imaging techniques that provide free space, label free imaging are powerful tools in obtaining structural and biochemical information in biological samples. To date, most of the optical imaging technologies create images with a specific contrast and require multimodality integration to add additional contrast. In this study, we demonstrate spectroscopic Thermo-elastic Optical Coherence Tomography (TE-OCT) as a potential tool in tissue identification. TE-OCT creates images based on two different forms of contrast: optical reflectance and thermo-elastic deformation. TE-OCT uses short laser pulses to induce thermo-elastic tissue deformation and measures the resulting surface displacement using phase-sensitive OCT. In this work we characterized the relation between thermo-elastic displacement and optical absorption, excitation, fluence and illumination area. The experimental results were validated with a 2-dimensional analytical model. Using spectroscopic TE-OCT, the thermo-elastic spectra of elastic phantoms and tissue components in coronary arteries were extracted. Specific tissue components, particularly lipid, an important biomarker for identifying atherosclerotic lesions, can be identified in the TE-OCT spectral response. As a label-free, free-space, dual-contrast, all-optical imaging technique, spectroscopic TE-OCT holds promise for biomedical research and clinical pathology diagnosis.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

Bundesministerium für Bildung und Forschung

Deutsche Forschungsgemeinschaft

State of Schleswig-Holstein

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Biotechnology

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