...
首页> 外文期刊>Cardiovascular engineering >On-Line Identification of Hemodynamic Variables by Dilution of Ultrapure Dialysate During Hemodialysis
【24h】

On-Line Identification of Hemodynamic Variables by Dilution of Ultrapure Dialysate During Hemodialysis

机译:血液透析过程中超纯透析液稀释在线鉴定血流动力学变量

获取原文
获取原文并翻译 | 示例
           

摘要

The removal of fluid during hemodialysis (HD) affecting both blood volume and cardiac output (CO) is one of the main causes for intradialytic hypotension, Information on hemo-dynamic variables obtained during HD may help to detect and to prevent this risk. It was the aim to develop a technique and a model for simple bedside identification of these variables. The 4008H HDF dialysis machine (Fresenius Medical Care, Bad Homburg, Germany) has the capability to inject defined volumes of ultrapure dialysate at correct temperatures into the extracorporeal bloodline at the relatively slow rate of 150 m L/min, which can be used for the purpose of indicator dilution measurements. However, the classic bolus approach to calculate CO fails in the setting of long and slow infusions. Dilution curves were therefore analyzed by a two-compartment model where the exchange between central (V_1) and peripheral (V_2) compartments was determined by systemic blood flow (q_(sys)). A blood volume monitor (BVM, Fresenius Medical Care, Bad Homburg, Germany) was used for on-line measurement of changes in blood water concentration (BWC) caused by the dilution. Extracted dilution curves were then used to fit the two-compartment model to the experimental data. The model produced plausible parameters where q_(sys) determined in two patients and for repeated measurements (7.6+-0.6 L/min) was close to CO obtained by the reference technique (7.1+-1.6 L/min). The system has the potential for complete automatization when equipped with appropriate control inputs to the BVM and to the HDF-module of the HD machine.
机译:血液透析(HD)期间影响液体量和心输出量(CO)的液体清除是透析内低血压的主要原因之一。关于在血液透析期间获得的血液动力学变量的信息可能有助于发现并预防这种风险。目的是开发一种技术和模型来简化这些变量的床旁识别。 4008H HDF透析机(Fresenius Medical Care,Bad Homburg,Germany)能够以正确的温度以150 m L / min的相对较慢的速率将定义体积的超纯透析液注射到体外血液中,可用于指标稀释度测量的目的。但是,在长时间和缓慢输注的情况下,用于计算CO的经典推注方法无法实现。因此,通过两室模型分析稀释曲线,其中中央室(V_1)和外周室(V_2)之间的交换由全身血流量(q_(sys))确定。使用血容量监测器(BVM,德国巴特洪堡的费森尤斯医疗公司)对稀释引起的血水浓度(BWC)变化进行在线测量。然后使用提取的稀释曲线将两室模型拟合到实验数据。该模型产生了合理的参数,其中在两名患者中确定的q_(sys)以及用于重复测量的(7.6 + -0.6 L / min)接近参考技术获得的CO(7.1 + -1.6 L / min)。当为BVM和HD机器的HDF模块配备适当的控制输入时,该系统就有可能实现完全自动化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号