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K Ilstrup

Publications and source records attributed to K Ilstrup.

7 recordsLinked to original sources

Rapid high-efficiency hemodialysis.

Reductions in treatment time are attractive for patients and dialysis centers. However, there are concerns related to treatment adequacy and increased intradialytic symptoms. Treatment times were progressively reduced in 12 stable patients on standard 4-h acetate hemodialysis, solute clearances being increased proportionately, until the tolerance limit manifested by increased complications or 2.5 h of treatment was reached. Once shortened schedules (mean reduction approximately 31%) were achieved, a 2-month surveillance period was initiated, followed by 2 additional months of bicarbonate therapy, treatment time being unchanged. Rapid bicarbonate hemodialysis was associated with a significantly lower incidence of hypotension, nausea, and vomiting than rapid acetate or standard acetate therapies. Fluid removal was comparable with that of standard treatment, and serum chemistry levels remained stable. Based on the success of these studies treatment times have been reduced in greater than 200 patients with high-efficiency bicarbonate therapy for long-term evaluations.

Acetates↗

Technical requirements for rapid high-efficiency therapies.

Significant reductions in treatment time are possible with rapid high-efficiency hemodialysis and hemodiafiltration, provided the therapies are implemented so as to maintain adequacy of solute and fluid removal without compromising patient comfort. The key technical elements necessary for such implementation include high blood flow rates, higher efficiency dialyzers/diafilters, ultrafiltration control systems, and bicarbonate as the buffer source. In addition, hemodiafiltration requires schemes to ensure sterility and nonpyrogenicity of the infusion fluid and appropriate balancing of the rates of ultrafiltration and reinfusion. In general, rapid high-efficiency therapies are technically more complex than standard therapy, and rapid hemodiafiltration appears to be more complex than rapid hemodialysis. The technology required for rapid hemodialysis currently exists, but it needs to be fine-tuned and integrated for routine application.

Acetates↗