Abstract
Tissue hypoxia is associated with tumor and inflammatory diseases, and detection of hypoxia is potentially useful for their detailed diagnosis. An endoscope system that can optically observe hemoglobin oxy- gen saturation (StO2) would enable minimally invasive, real-time detection of lesion hypoxia in vivo. Currently, point measurement of tissue StO2 via endoscopy is possible using the commercial fiber-optic oximeter T-Stat, which is based on visible light spectroscopy at many wavelengths. For clinical use, however, imaging of StO2 is desirable to assess the distribution of tissue oxygenation around a lesion. Here, we describe our StO2 imaging technique based on a small number of wavelength ranges in the visible range. By assuming a homogeneous tissue, we demonstrated that tissue StO2 can be obtained independently from the scattering property and blood concentration of tissue using four spectral bands. We developed a prototype endoscope system and used it to observe tissue-simulating phantoms. The StO2 (%) values obtained using our technique agreed with those from the T-Stat within 10%.Wealso showed that tissue StO2 can be derived using three spectral band if the scattering property is fixed at preliminarily measured values.
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CITATION STYLE
Saito, T., & Yamaguchi, H. (2015). Optical imaging of hemoglobin oxygen saturation using a small number of spectral images for endoscopic application. Journal of Biomedical Optics, 20(12), 126011. https://doi.org/10.1117/1.jbo.20.12.126011
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