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Advances in Tunneled Central Venous Catheters for Dialysis: Design and Performance
Author(s) -
Ash Stephen R.
Publication year - 2008
Publication title -
seminars in dialysis
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.899
H-Index - 78
eISSN - 1525-139X
pISSN - 0894-0959
DOI - 10.1111/j.1525-139x.2008.00494.x
Subject(s) - medicine , catheter , surgery , dialysis , central venous catheter , blood clotting , superior vena cava , dialysis catheter , stenosis , lumen (anatomy) , occlusion , radiology
Over 70% of patients initiating chronic hemodialysis in the United States have a tunneled central venous catheter (CVC) for dialysis as their first blood access device. Tunneled CVC have requirements that are unparalleled by other access devices: high blood flow rates at moderate pressure drops without obstruction, minimal trauma to the vein, resistance to occlusion by fibrous sheathing, prevention of infection, avoidance of clotting, biocompatibility, avoidance of lumen collapse and kinking and breaks, resistance to antiseptic agents, placement with minimal trauma, and radiopaque appearance on X‐ray. This publication reviews the numerous designs for tunneled CVC and evaluates the advantages and disadvantages of each design. A catheter that self‐centers in the superior vena cava (Centros™) is described, along with early clinical results. Current challenges and future directions for tunneled CVC for dialysis are discussed, included means to diminish catheter‐related infections, catheter tip clotting, fibrous sheathing, central venous stenosis, and external component bulk.