首页> 外文会议>Annual International Conference IEEE Engineering in Medicine and Biology Society >Relation between hematocrit and optical density in pulse oximetry -In vitro study with Waseda mock circulatory system
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Relation between hematocrit and optical density in pulse oximetry -In vitro study with Waseda mock circulatory system

机译:脉冲血液比谱与血液血管血管循环系统血管血管和光学密度的关系

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Optical properties of living tissues have not been well established even today, and bioopticinstrumentations have to be based on empirical formulae. In order to examine optical properties of the tissue having pulsating blood perfusion, we investigated the relation between optical density (defined as O.D.) of whole blood and hematocrit by transmission spectrophotometry. We used Waseda mock circulatory system that simulates blood circulation in the tissue. It was found that with increasing light path length, O.D. per unit light path length due to scattering and absorption effect, tended to become constant in each hematocrit. For wavelengths of 660, 805 and 940 nm, the relations between O.D. of whole blood and hematocrit predicted by Twersky's equation, Loewinger's equation and photon diffusion equation fitted to the data obtained. Meanwhile, for 1300 nm, the relation predicted by Loewinger's equation gave the best fit to the data.
机译:即使在今天,活组织的光学性质也没有得到很好的建立,并且生物二手仪必须基于经验性公式。为了检查具有脉冲血液灌注的组织的光学性质,我们通过透射光度法研究了全血和血细胞比容的光密度(定义为O.)之间的关系。我们使用了Wasea Mock循环系统,用于模拟组织中的血液循环。结果发现,随着光线长度的增加,O.D。每单位光路长由于散射和吸收效果,在每个血细胞比容中倾向于变得恒定。对于660,805和940nm的波长,O.D的关系。由Twersky等式预测的全血和血液比素,Loewinger的等式和光子扩散方程装配到所获得的数据。同时,对于1300nm,Loewinger等式预测的关系使得最适合数据。

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