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Simplified spectraphotometric method for the detection of red blood cell agglutination

机译:简化光谱光度法检测红细胞凝集

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摘要

Human error is the most significant factor attributed to incompatible blood transfusions. A spectrophotometric approach to blood typing has been developed by examining the spectral slopes of dilute red blood cell (RBC) suspensions in saline, in the presence and absence of various antibodies, offering a technique for the quantitative determination of agglutination intensity [Transfusion 39, 1051, 1999]. We offer direct theoretical prediction of the observed change in slope in the 660-1000 nm range through the use of the T-matrix approach and Lorenz-Mie theory for light scattering by dilute RBC suspensions. Following a numerical simulation using the T-matrix code, we present a simplified sensing method for detecting agglutination. The sensor design has been prototyped, fully characterized, and evaluated through a complete set of tests with over 60 RBC samples and compared with the full spectrophotometric method. The LED and photodiode pairs are found to successfully reproduce the spectroscopic determination of red blood cell agglutination.
机译:人为错误是导致输血不兼容的最重要因素。通过检查存在或不存在各种抗体的情况下在盐水中稀释的红细胞(RBC)悬浮液的光谱斜率,开发了一种分光光度法进行血型分析的方法,提供了一种定量测定凝集强度的技术[Transfusion 39,1051 ,1999]。通过使用T-矩阵方法和Lorenz-Mie理论对稀RBC悬浮液进行光散射,我们提供了在660-1000 nm范围内观察到的斜率变化的直接理论预测。在使用T矩阵代码进行数值模拟之后,我们提出了一种用于检测凝集的简化传感方法。该传感器的设计已经原型化,完全表征并通过一套完整的测试对60多个RBC样品进行了评估,并与完整的分光光度法进行了比较。发现LED和光电二极管对可以成功地再现红细胞凝集的光谱测定。

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