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Blood recirculation in intravenous catheters for hemodialysis
Z J Twardowski1, J C Van Stone, M E Jones
1Department of Medicine, University of Missouri, Columbia 65212.
Insights
Reversed lumens in long-term hemodialysis catheters cause significant blood recirculation. However, inflow failure catheters with reversed lumens show less recirculation, possibly due to blood clots dispersing flow.
Area of Science:
- Nephrology
- Biomedical Engineering
- Vascular Access
Background:
- Long-term i.v. catheters are crucial for hemodialysis.
- Catheter lumen reversal can lead to blood recirculation, compromising dialysis efficiency.
- Inflow failure is a common complication with these catheters.
Purpose of the Study:
- To quantify blood recirculation in hemodialysis catheters with standard and reversed lumens.
- To compare recirculation in well-functioning vs. inflow failure catheters with reversed lumens.
Main Methods:
- Measured blood recirculation at 300 mL/min blood flow.
- Collected systemic blood samples at 50 mL/min flow.
- Calculated recirculation using urea and creatinine concentrations.
Main Results:
- Standard lumens in well-functioning catheters had negligible recirculation (2.09%).
- Reversed lumens in well-functioning catheters showed significant recirculation (13.58%).
- Reversed lumens in inflow failure catheters had less recirculation (7.10%) compared to well-functioning reversed lumens.
Conclusions:
- Lumen reversal is a primary cause of significant blood recirculation.
- Inflow failure catheters with reversed lumens exhibit reduced recirculation.
- Blood clots may mitigate recirculation in inflow failure catheters by dispersing outflow.
Abstract:
Long-term i.v. catheters for hemodialysis have the outflow tip extending approximately 2 to 3 cm beyond the inflow tip to prevent blood recirculation during dialysis; however, the lumens are frequently reversed because of inflow failure (i.e., inadequate flow when the inflow lumen is used for blood inflow into the dialyzer). Blood recirculation with reversed lumens (outflow lumen used for blood inflow) in inflow failure catheters and with standard and reversed lumens in well-functioning catheters was measured. Recirculation was measured at a blood flow of 300 mL/min. Systemic blood samples were taken after blood flow was slowed to 50 mL/min. Blood recirculation was calculated as a percentage of the difference between systemic and inflow lumen solute concentrations divided by the difference between systemic and outflow lumen solute concentrations. For each catheter, the recirculation values were calculated separately for urea and creatinine. Average recirculation as measured by both solutes was also calculated. Blood recirculations with standard lumens of well-functioning catheters, reversed lumens of well-functioning catheters, and reversed lumens of inflow failure catheters were 2.09 +/- 1.95, 13.58 +/- 9.87, and 7.10 +/- 5.12 (mean +/- SD), respectively. Whereas recirculation with standard lumens of well-functioning catheters is negligible, reversal of lumens causes considerable recirculation. Recirculation in inflow failure catheters with reversed lumens is significantly less than that with reversed lumens of well-functioning catheters. It was proposed that a blood clot attached at and/or immediately distal to the inflow lumen may disperse outflowing blood and diminish recirculation in inflow failure catheters.(ABSTRACT TRUNCATED AT 250 WORDS)
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