| Literature DB >> 23640076 |
Biwei Yin1, Roman V Kuranov, Austin B McElroy, Shams Kazmi, Andrew K Dunn, Timothy Q Duong, Thomas E Milner.
Abstract
A swept-source dual-wavelength photothermal (DWP) optical coherence tomography (OCT) system is demonstrated for quantitative imaging of microvasculature oxygen saturation. DWP-OCT is capable of recording three-dimensional images of tissue and depth-resolved phase variation in response to photothermal excitation. A 1,064-nm OCT probe and 770-nm and 800-nm photothermal excitation beams are combined in a single-mode optical fiber to measure microvasculature hemoglobin oxygen saturation (SO(2)) levels in phantom blood vessels with a range of blood flow speeds (0 to 17 mm/s). A 50-μm-diameter blood vessel phantom is imaged, and SO(2) levels are measured using DWP-OCT and compared with values provided by a commercial oximeter at various blood oxygen concentrations. The influences of blood flow speed and mechanisms of SNR phase degradation on the accuracy of SO(2) measurement are identified and investigated.Entities:
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Year: 2013 PMID: 23640076 PMCID: PMC3642243 DOI: 10.1117/1.JBO.18.5.056005
Source DB: PubMed Journal: J Biomed Opt ISSN: 1083-3668 Impact factor: 3.170