Factors affecting measurement of optic parameters by time-resolved near-infrared spectroscopy in breast cancer

The purpose of this study was to evaluate the effects of the thickness and depth of tumors on hemoglobin measurements in breast cancer by optical spectroscopy and to demonstrate tissue oxygen saturation (SO2) and reduced scattering coefficient (μs′) in breast tissue and breast cancer in relation to...

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Published inJournal of biomedical optics Vol. 23; no. 2; p. 026010
Main Authors Yoshizawa, Nobuko, Ueda, Yukio, Mimura, Tetsuya, Ohmae, Etsuko, Yoshimoto, Kenji, Wada, Hiroko, Ogura, Hiroyuki, Sakahara, Harumi
Format Journal Article
LanguageEnglish
Published United States Society of Photo-Optical Instrumentation Engineers 01.02.2018
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Summary:The purpose of this study was to evaluate the effects of the thickness and depth of tumors on hemoglobin measurements in breast cancer by optical spectroscopy and to demonstrate tissue oxygen saturation (SO2) and reduced scattering coefficient (μs′) in breast tissue and breast cancer in relation to the skin-to-chest wall distance. We examined 53 tumors from 44 patients. Total hemoglobin concentration (tHb), SO2, and μs′ were measured by time-resolved spectroscopy (TRS). The skin-to-chest wall distance and the size and depth of tumors were measured by ultrasonography. There was a positive correlation between tHb and tumor thickness, and a negative correlation between tHb and tumor depth. SO2 in breast tissue decreased when the skin-to-chest wall distance decreased, and SO2 in tumors tended to be lower than in breast tissue. In breast tissue, there was a negative correlation between μs′ and the skin-to-chest wall distance, and μs′ in tumors was higher than in breast tissue. Measurement of tHb in breast cancer by TRS was influenced by tumor thickness and depth. Although SO2 seemed lower and μs′ was higher in breast cancer than in breast tissue, the skin-to-chest wall distance may have affected the measurements.
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content type line 23
ISSN:1083-3668
1560-2281
DOI:10.1117/1.JBO.23.2.026010