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Wavelength selection in measuring red blood cell aggregation based on light transmittance

机译:基于透光率测量红细胞聚集的波长选择

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摘要

The reversible aggregation of red blood cells (RBC) is of current basic science and clinical interest. Using a flow channel and light transmittance (LT) through RBC suspensions, we have examined the effects of wavelength (500 to 900 nm) on the static and dynamic aspects of RBC aggregation for normal blood and suspensions with reduced or enhanced aggregation; the effects of oxygenation were also explored. Salient observations include: 1. significant effects of wavelength on aggregation parameters reflecting the extent of aggregation (i.e., number of RBC per aggregate); 2. no significant effects of wavelength on parameters reflecting the time course of RBC aggregation; 3. a prominent influence of hemoglobin oxygen saturation on both extent and time-course related aggregation parameters measured at wavelengths less than 700 nm, but only on the time-course at 800 nm; and 4. the power of parameters in detecting a given alteration of RBC aggregation is affected by wavelength, in general being greater at higher wavelengths. It is recommended that light sources with wavelengths around 800 nm be used in instruments for measuring RBC aggregation via LT.
机译:红细胞(RBC)的可逆聚集具有当前的基础科学和临床兴趣。我们使用流动通道和通过RBC悬液的透光率(LT),检查了波长(500至900 nm)对正常血液和聚集减少或增强的悬液的RBC聚集的静态和动态方面的影响;还探讨了氧合作用。突出的观察结果包括:1.波长对反映聚集程度(即,每个聚集体的RBC数量)的聚集参数的显着影响; 2.波长对反映RBC聚合时间过程的参数没有明显影响; 3.血红蛋白氧饱和度对在小于700 nm的波长下测得的程度和与时程相关的聚集参数的显着影响,但仅对在800 nm处的时程有影响; 4.检测红细胞聚集的给定变化的参数的能力受波长的影响,通常在较高波长下更大。建议在通过LT测量RBC聚集的仪器中使用波长为800 nm左右的光源。

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