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Effect of hemolysis and free hemoglobin on optical hematocrit measurements in the extracorporeal circulation.

机译:溶血和游离血红蛋白对体外循环中光学血细胞比容测量的影响。

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Clinically significant hemolysis is a rare but serious problem in dialysis. Because hemolysis affects red blood cell count and optical density of plasma it has been speculated whether techniques used for online blood volume monitoring would be useful to detect hemolysis. In this study the influence of free hemoglobin on hematocrit and relative blood volume changes measured by optical means (CritLine, HemaMetrics, Kaysville, UT) were examined using an in vitro model with bovine blood. Free hemoglobin solutions were added in steps to circulating whole blood at baseline hematocrits covering a range from 30% to 60% and at blood flows of approximately 200 and 400 ml/min. The free hemoglobin concentration reached was in the range of 2 to 3 g/dl. The presence of free hemoglobin led to a relative increase in hematocrit in the range of 0.3% per 0.1 g of free hemoglobin per dl (+3% dl/g). As an increase in hematocrit is interpreted as a decrease in blood volume, this change referred to an apparent decrease in relative blood volume in the same order of magnitude (-3% dl/g). Effects were more pronounced at low baseline hematocrit. Thus, although optical hematocrit readings are affected by the presence of free hemoglobin the changes at levels associated with clinical symptoms appear to be too small to be accurately detected in the in vivo situation where the hematocrit and the resulting optical signal is affected by various physiological processes and therefore much noisier.
机译:具有临床意义的溶血是透析中罕见但严重的问题。由于溶血会影响红细胞计数和血浆的光密度,因此人们推测用于在线血容量监测的技术是否对检测溶血有用。在这项研究中,使用带有牛血的体外模型检查了游离血红蛋白对血细胞比容的影响,并通过光学手段(CritLine,HemaMetrics,Kaysville,UT)测量了相对血容量的变化。将游离血红蛋白溶液逐步添加到循环全血中,基线血细胞比容范围为30%至60%,血液流量约为200和400 ml / min。达到的游离血红蛋白浓度在2至3g / dl的范围内。游离血红蛋白的存在导致血细胞比容相对增加,范围为每dl 0.1 g游离血红蛋白0.3%(+ 3%dl / g)。由于血细胞比容的增加被解释为血容量的减少,因此这种变化指的是相对血容量以相同的数量级(-3%dl / g)明显减少。在基线血细胞比容低的情况下效果更明显。因此,尽管光学血细胞比容读数受游离血红蛋白的存在影响,但与临床症状相关的水平变化似乎太小,无法在体内血细胞比容和产生的光信号受各种生理过程影响的情况下被准确检测到因此噪音更大。

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