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Changes in Electrical and Physiological Properties of Human Blood During Storage

机译:人体血液在储存过程中的电生理特性的变化

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In this study, the relationship between physiological parameters and electrical impedance changes of human blood and their further clinical implications are investigated. The study is performed on 255 erythrocyte suspension samples derived from 51 male donors. The samples are stored at 4°C and measurements are done on the 0th, 10th, 21st, 35thand 42nddays of storage. The complex impedance is measured in the frequency range from 100 kHz to 1 MHz. The extracellular resistance Reand the effective cell memebrane capacitance Cmincreased progressively with storage time while the intracellular resistance Rihas decreased. Electrical impedance alterations are explained in terms of the measurements of Na+, K+and Cl-concentrations, pH and ATP. Storage of red blood cells resulted in a rise in the extracellular K+and a fall in the extracellular Na+, Cl-, pH and ATP. Variance analysis (ANOVA) is used to evaluate any variations in blood parameters, in relation to storage time. According to the (SPSS) regression analysis, Riand Reare highly correlated with Na+, K+, Cl-and pH and, more significantly with ATP. The Cole-Cole parameters Fcand α showed very little change with storage time and Cmhad weak correlations with blood parameters. Results show that complex impedance measurements may serve as a useful indicator in the quality assessment of blood bank stored blood samples.
机译:在这项研究中,研究了人体血液的生理参数与电阻抗变化之间的关系及其进一步的临床意义。该研究是对来自51个男性供体的255个红细胞悬浮液样品进行的。样品存储在4°C并在第0 ,21 上进行测量/ sup>和42 天的存储空间。复阻抗是在100 kHz至1 MHz的频率范围内测量的。细胞外电阻R e 和有效细胞膜电容C m 随保存时间的增加而逐渐增加,而细胞内电阻R i 却减小。根据Na + ,K + 和Cl -浓度,pH和ATP的测量解释了电阻抗的变化。红细胞的储存导致细胞外K + 的增加和细胞外Na + ,Cl -,pH和ATP的下降。方差分析(ANOVA)用于评估血液参数相对于储存时间的任何变化。根据(SPSS)回归分析,R i 和R e 与Na + ,K + ,Cl -和pH,ATP则更显着。 Cole-Cole参数F c 和α随存储时间的变化很小,而C m 与血液参数的相关性较弱。结果表明,复杂的阻抗测量结果可作为对血库存储的血液样本进行质量评估的有用指标。

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