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The effect of hematocrit on the results of measurements using glycose meters based on different techniques

机译:血细胞比容对基于不同技术的糖度计测量结果的影响

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摘要

Background: The aim of the study was to evaluate the effect of hematocrit (HCT) on glucose meter assays based on different measurement techniques. Methods: This paper studied glucose meters utilizing the glucose dehydrogenase reaction and four measurement techniques: colorimetry (HemoCue), reflectometry (Accu-Chek Active), amperometry (Optium Xido) and coulometry (Optium Omega). The EDTA venous blood samples HCT were modified by adding or removing defined aliquots of plasma. Glucose concentration was measured using each meter in 27 batches of blood samples, with HCT ranging from 20% to 60% in 10% increments. The data were analyzed using repeated measures models and a linear random effects model. Results: A significant relationship between HCT and glucose reading in all meters was found and, for all meters except Optium Xido, there was a significant modification of this relationship by glucose level. The relative decrease in glucose concentration per 1% increase of the HCT value varied from 0.30% for Optium Omega in samples with glucose concentrations <5.55 mmol/L to 1.37% for Optium Xido in the same stratum (p<0.0001). The 5% glucose meter error (the ADA recommendation) was reached in the <5.55 mmol/L stratum after HCT change by 3.9%-16.7%. Conclusions: There is a significant continuous effect of HCT on measurement accuracy of glucose meters across its wide range of values and glucose concentrations. The most sensitive to the HCT interference was the system utilizing amperometric technique (Optium Xido) followed by the one with reflectometric technique (Accu-Chek Active), while the systems with the coulometric technique (Optium Omega) or colorimetric measurements in whole blood haemolysate (HemoCue) were less sensitive.
机译:背景:本研究的目的是评估基于不同测量技术的血细胞比容(HCT)对血糖仪测定的影响。方法:本文研究了利用葡萄糖脱氢酶反应和四种测量技术的血糖仪:比色法(HemoCue),反射法(Accu-Chek Active),安培法(Optium Xido)和库仑法(Optium Omega)。 EDTA静脉血样HCT通过添加或去除血浆的等分试样进行修饰。使用每个仪表在27个批次的血液样本中测量葡萄糖浓度,HCT范围为20%至60%,增量为10%。使用重复测量模型和线性随机效应模型分析数据。结果:在所有仪表中,HCT与葡萄糖读数之间均存在显着关系,并且除Optium Xido以外的所有仪表均通过葡萄糖水平对该关系进行了显着修改。 HCT值每增加1%,葡萄糖浓度的相对降低就从在相同层中葡萄糖浓度<5.55 mmol / L的样品中Optium Omega的0.30%到Optium Xido的1.37%(p <0.0001)。 HCT变化后,在<5.55 mmol / L的地层中,血糖仪误差达到5%(ADA建议),为3.9%-16.7%。结论:HCT在广泛的数值范围和葡萄糖浓度范围内对血糖仪的测量准确性具有显着的持续影响。对HCT干扰最敏感的系统是采用安培技术(Optium Xido)的系统,其次是采用反射技术(Accu-Chek Active)的系统,而采用库仑技术(Optium Omega)或比色法测量全血溶血液的系统(Optical Xido)。 HemoCue)较不敏感。

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