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Quantitative photoacoustic blood oxygenation measurement of whole porcine blood samples using a multi-wavelength semiconductor laser system

机译:使用多波长半导体激光系统对猪全血样品进行光声血氧定量测定

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We present a photoacoustic measurement system based on semiconductor lasers for blood oxygenation measurements. It permits to use four different optical wavelengths (650nm, 808nm, 850nm, 905nm) to generate photoacoustic signals. As the optical extinction coefficient of oxygenated hemoglobin and deoxygenated hemoglobin is different at specific wavelengths, a blood oxygenation measurement by a multi-wavelength photoacoustic laser system is feasible. Especially at 650nm, the clear difference between the extinction coefficients of the two hemoglobin derivates permits to determine the blood oxygenation in combination with other near infrared wavelengths. A linear model based on tabulated values of extinction coefficients for fully oxygenated and fully deoxygenated hemoglobin is presented. We used heparin stabilized whole porcine blood samples to model the optical behavior of human blood, as the optical absorption behavior of porcine hemoglobin does not differ significantly from human hemoglobin. To determine the real oxygen saturation values of the blood samples, we measured the partial oxygen pressure with an IRMA Trupoint Blood Analysis System. The oxygen saturation values were calculated from a dissociation curve for porcine blood. The results of the photoacoustic measurement are in qualitatively good agreement with the predicted linear model. Further, we analyze the abilities and the limitations of quantitative oxygenation measurements
机译:我们提出了一种基于半导体激光器的光声测量系统,用于血液氧合测量。它允许使用四个不同的光波长(650nm,808nm,850nm,905nm)来产生光声信号。由于氧合血红蛋白和脱氧血红蛋白在特定波长下的消光系数不同,因此通过多波长光声激光系统进行血液氧合测量是可行的。尤其是在650nm处,两种血红蛋白衍生物的消光系数之间的明显差异允许结合其他近红外波长确定血液中的氧合。提出了基于完全氧合和完全脱氧血红蛋白消光系数表值的线性模型。我们使用肝素稳定的全猪血样来模拟人血的光学行为,因为猪血红蛋白的光吸收行为与人血红蛋白没有显着差异。为了确定血样的实际氧饱和度值,我们使用IRMA Trupoint血液分析系统测量了部分氧压。根据猪血的解离曲线计算氧饱和度值。光声测量的结果在质量上与预测的线性模型吻合。此外,我们分析了定量氧合测量的能力和局限性

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