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首页> 外文期刊>ASAIO journal >Extracorporeal CO2 Removal by Respiratory Electrodialysis: An In Vitro Study
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Extracorporeal CO2 Removal by Respiratory Electrodialysis: An In Vitro Study

机译:呼吸电渗析去除体外二氧化碳的体外研究

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We previously described a highly efficient extracorporeal CO2 removal technique called respiratory electrodialysis (R-ED). Respiratory electrodialysis was composed of a hemodiafilter and a membrane lung (ML) positioned along the extracorporeal blood circuit, and an electrodialysis (ED) cell positioned on the hemodiafiltrate. The ED regionally increased blood chloride concentration to convert bicarbonate to CO2 upstream the ML, thus enhancing ML CO2 extraction (VCO2ML). In this in vitro study, with an aqueous polyelectrolytic carbonated solution mimicking blood, we tested a new R-ED setup, featuring an ML positioned on the hemodiafiltrate after the ED, at increasing ED current levels (0, 2, 4, 6, and 8 A). We measured VCO2ML, electrolytes concentrations, and pH of the extracorporeal circuit. Raising levels of ED-current increased chloride concentration from 107.5 +/- 1.6 to 114.6 +/- 1.3 mEq/L (0 vs. 8 A, p < 0.001) and reduced pH from 7.48 +/- 0.01 to 6.51 +/- 0.05 (0 vs. 8 A, p < 0.001) of the hemodiafiltrate entering the ML. Subsequently, VCO2ML increased from 27 +/- 1.7 to 91.3 +/- 1.5 ml/min (0 vs. 8 A, p < 0.001). Respiratory electrodialysis is efficient in increasing VCO2ML of an extracorporeal circuit featuring an ML perfused by hemodiafiltrate. During R-ED, the VCO2ML can be significantly enhanced by increasing the ED current.
机译:我们之前描述了一种高效的体外二氧化碳去除技术,称为呼吸电渗析(R-ED)。呼吸电渗析由沿体外血液回路放置的血液渗滤器和膜肺(ML)和位于血液渗滤液上的电渗析(ED)细胞组成。 ED局部增加了血液氯化物的浓度,从而将ML上游的碳酸氢盐转化为CO2,从而增强了ML CO2的提取(VCO2ML)。在这项体外研究中,我们采用模拟血液的聚电解碳酸水水溶液,测试了一种新的R-ED装置,其特征是ML位于ED后血液渗滤液中,并且ED电流水平不断提高(0、2、4、6和8 A)。我们测量了VCO2ML,电解质浓度和体外回路的pH。 ED电流水平的提高使氯化物浓度从107.5 +/- 1.6增至114.6 +/- 1.3 mEq / L(0 vs. 8 A,p <0.001),pH值从7.48 +/- 0.01降低至6.51 +/- 0.05 (0 vs. 8 A,p <0.001)进入ML的血液透析滤液。随后,VCO2ML从27 +/- 1.7增加到91.3 +/- 1.5 ml / min(0对8 A,p <0.001)。呼吸电渗析可有效提高以血液渗滤液灌注的ML为特征的体外循环的VCO2ML。在R-ED期间,可以通过增加ED电流来显着增强VCO2ML。

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