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Influence of water on noninvasive hemoglobin measurement by Dynamic Spectrum

机译:水对动态光谱法测定无创血红蛋白的影响

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Water as the maximum content in whole blood has a great influence on noninvasive hemoglobin measurement. To analyze its influence on Dynamic Spectrum, we chose the analysis window at the wavelength range of 600-1050 nm based on 62 patients data. The spectra from 600.87 to 920.58 nm were first used to develop a calibration model. The spectra affected by water absorption band at 920.58-1050.6 nm were split in nearly 10 nm increments, and then each part of the spectra were gradually added to the spectra at 600.87-920.58 nm to develop different calibration models. Comparing the performances of these models developed by using different wavelength ranges, we find that the spectra covering absorption peaks of non-detected components can improve the signal-to-noise ratio of the calibration model, while the spectra whose boundary is around the absorption peak are exposed to the highest noise level. The results open up an avenue for reducing the non-detected component influence by selecting wavelength range. Moreover, the results demonstrate the feasibility of noninvasive low-level hemoglobin measurements by Dynamic Spectrum.
机译:水是全血中的最大含量,对无创血红蛋白的测量有很大的影响。为了分析其对动态光谱的影响,我们基于62位患者数据选择了600-1050 nm波长范围内的分析窗口。首先使用600.87至920.58 nm的光谱建立校正模型。将受920.58-1050.6 nm吸水带影响的光谱以近10 nm的增量进行拆分,然后将光谱的每个部分逐渐添加到600.87-920.58 nm的光谱中,以开发不同的校准模型。比较使用不同波长范围开发的这些模型的性能,我们发现覆盖未检测到的组分的吸收峰的光谱可以提高校准模型的信噪比,而边界在吸收峰附近的光谱处于最高的噪音水平。结果为通过选择波长范围减少未检测到的成分影响开辟了道路。此外,结果证明了通过动态频谱进行无创性低水平血红蛋白测量的可行性。

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