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首页> 外文期刊>ASAIO journal >Assessment of temporary dialysis catheter performance on the basis of flow and pressure measurements in vivo and in vitro.
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Assessment of temporary dialysis catheter performance on the basis of flow and pressure measurements in vivo and in vitro.

机译:根据体内和体外的流量和压力测量评估临时透析导管的性能。

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摘要

The efficiency of hemodialysis treatments depends on catheter performance and, consequently, on effective blood flow that can be achieved at maximum extracorporeal pressures. Differences in effective and displayed flow were determined with ultrasound dilution technology, and a mathematical correction function for the MultiFiltrate hemodialysis machine was developed. This algorithm was used to calculate effective blood flow during treatment from displayed flow and arterial pressure. To assess catheter performance over time, we measured effective blood flow as function of extracorporeal pressure in 11 uncuffed, tunneled hemodialysis catheters with shotgun design. Pressure and flow profiles of the catheters were determined, and pressure symmetry was measured. To assess flow resistance over time, pressure trends of the catheters at different blood flow rates were measured for each patient over a mean period of 6.1 +/- 3.0 days. Increases in flow resistance during the study period were found to be small. Mean arterial pressure decreased from -185 mm Hg to -200 mm Hg, and mean venous pressure increased from 197 mm Hg to 215 mm Hg. Effective flow did not change significantly during the study. In conclusion, all catheters investigated easily provided effective flows above 450 mL/min over the study period at maximum extracorporeal pressures below +/-300 mm Hg.
机译:血液透析治疗的效率取决于导管的性能,因此取决于在最大体外压力下可获得的有效血流量。通过超声稀释技术确定了有效流量和显示流量之间的差异,并开发了MultiFiltrate血液透析机的数学校正功能。该算法用于根据显示的血流量和动脉压计算治疗期间的有效血流量。为了评估随时间变化的导管性能,我们测量了11支采用散弹枪设计的无袖,隧道式血液透析导管的有效血流量与体外压力的关系。确定导管的压力和流量分布,并测量压力对称性。为了评估随时间变化的流阻,在每位患者平均6.1 +/- 3.0天的时间内测量了不同血流速率下导管的压力趋势。研究期间发现流动阻力的增加很小。平均动脉压从-185 mm Hg降低到-200 mm Hg,平均静脉压从197 mm Hg增加到215 mm Hg。在研究过程中,有效流量没有明显变化。总之,在研究期间内,在最大+/- 300 mm Hg的最大体外压力下,所有易于研究的导管均可提供高于450 mL / min的有效流量。

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