4.5 Article

Quantification of ischemic muscle deoxygenation by near infrared time-resolved spectroscopy

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JOURNAL OF BIOMEDICAL OPTICS
卷 5, 期 1, 页码 102-105

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SPIE-INT SOCIETY OPTICAL ENGINEERING
DOI: 10.1117/1.429975

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near infrared spectroscopy; oxygen gradient; interstitial PO2

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The purpose of this study was to quantify muscle deoxygenation in human skeletal muscles using near infrared time-resolved spectroscopy (NIRTRS) and compare NIRTRS indicators and blood saturation. The forearm muscles of five healthy males (aged 27-32 yrs,) were monitored for changes in hemoglobin saturation (SO2) during 12 min of arterial occlusion and recovery. SO2 was determined by measuring the temporal profile of photon diffusion at 780 and 830 nm using NIRTRS, and was defined as SO2-TRS. Venous blood samples were also obtained for measurements of SvO2, and PvO2. Interstitial PO2(PintO2) was monitored by placing an O-2 electrode directly into the muscle tissue. Upon the initiation of occlusion, all parameters fell progressively until reaching a plateau in the latter half of occlusion, It was observed at the end of occlusion that SO2-TRS (24.1 +/- 5.6%) agreed with SvO2(26.2+/-6.4) and that PintO2 (14.7+/-1.0 Torr) agreed with PvO2 (17.3+/-2.2 Torr). The resting O-2 store (oxygenated hemoglobin) and O-2 consumption rate were 290 mu M and 0.82 mu M s(-1), respectively, values which reasonably agree with the reported results. These results indicate that there was no O-2 gradient between vessels and interstisium at the end of occlusion. (C) 2000 society of Photo-Opical Instrumentation Engineers. [S1083-3668(00)01301-0].

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