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2020 | OriginalPaper | Buchkapitel

Liquid Phantom for Calibrating Tissue Oxygen Saturation Measurement

verfasst von : Po-Hung Chang, Shao-Hung Lu, Tieh-Cheng Fu, Kang-Ping Lin, Cheng-Lun Tsai

Erschienen in: Future Trends in Biomedical and Health Informatics and Cybersecurity in Medical Devices

Verlag: Springer International Publishing

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Abstract

In recent years, the prevalence of peripheral arterial disease (PAD) has increased. This disease is related to arterial occlusion in the heart and brain. Many researches mentioned, measurement of muscle tissue oxygen saturation by near-infrared spectroscopy (NIRS) has a different phenomenon for normal people and patients. In order to quantify the muscle oxygen saturation measured by near-infrared spectroscopy. In this research, we use a in-house made multi-wavelength and two light-detector distances to measure the liquid phantom with adjustable oxygen saturation. LED polarizer wavelength is 740 nm, 808 nm and 850 nm. Two light-detector distances are 32 mm and 40 mm. Liquid phantom using purified red blood cell from pig blood and intralipid to mix the blood cell solution. The liquid phantom simulated lower limbs muscles optical properties. Use yeast and oxygen to change oxygen saturation in the liquid phantom and continuous measurement at the same time. Measurement result show, absorbance at 740 nm and 850 nm will change with oxygen saturation, but absorbance at 808 nm will not. In the other side, between two light-detector distances the trend of change is small. This result is consistent with the absorption spectrum of hemoglobin to calculate a calibration curve for muscle oxygen saturation quantification in a in-house made machine. In the future, it will be embedded in the signal of clinical measurement to help PAD patient’s classification. This classification will become one of the indicators for doctor diagnosis.

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Literatur
2.
Zurück zum Zitat Yu, G., Durduran, T., Lech, G., Zhou, C., Chance, B., Mohler, E.R., Yodh, A.G.: Time-dependent blood flow and oxygenation in human skeletal muscles measured with noninvasive near-infrared diffuse optical spectroscopies. J. Biomed. Opt. 10(2), 024–027 (2005). https://doi.org/10.1117/1.1884603CrossRef Yu, G., Durduran, T., Lech, G., Zhou, C., Chance, B., Mohler, E.R., Yodh, A.G.: Time-dependent blood flow and oxygenation in human skeletal muscles measured with noninvasive near-infrared diffuse optical spectroscopies. J. Biomed. Opt. 10(2), 024–027 (2005). https://​doi.​org/​10.​1117/​1.​1884603CrossRef
3.
Zurück zum Zitat Lu, W.-C., Lu, S.-H., Chen, M.-F., Fu, T.-C., Lin, K.-P., Tsai, C.-L.: Portable near-infrared spectroscopy for detecting peripheral arterial occlusion. In: IFMBE Proceedings. International Conference on Bio and Health Informatics. Precision Med. Powered by pHealth and Connected Health, Thessaloniki, vol. 66, pp. 109–113 (2018) Lu, W.-C., Lu, S.-H., Chen, M.-F., Fu, T.-C., Lin, K.-P., Tsai, C.-L.: Portable near-infrared spectroscopy for detecting peripheral arterial occlusion. In: IFMBE Proceedings. International Conference on Bio and Health Informatics. Precision Med. Powered by pHealth and Connected Health, Thessaloniki, vol. 66, pp. 109–113 (2018)
Metadaten
Titel
Liquid Phantom for Calibrating Tissue Oxygen Saturation Measurement
verfasst von
Po-Hung Chang
Shao-Hung Lu
Tieh-Cheng Fu
Kang-Ping Lin
Cheng-Lun Tsai
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-30636-6_27

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