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PUBMED FOR HANDHELDS

Journal Abstract Search


744 related items for PubMed ID: 10910443

  • 1. Extended daily veno-venous high-flux haemodialysis in patients with acute renal failure and multiple organ dysfunction syndrome using a single path batch dialysis system.
    Lonnemann G, Floege J, Kliem V, Brunkhorst R, Koch KM.
    Nephrol Dial Transplant; 2000 Aug; 15(8):1189-93. PubMed ID: 10910443
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  • 2. Sustained low-efficiency dialysis in the ICU: cost, anticoagulation, and solute removal.
    Berbece AN, Richardson RM.
    Kidney Int; 2006 Sep; 70(5):963-8. PubMed ID: 16850023
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  • 3. A single-pass batch dialysis system: an ideal dialysis method for the patient in intensive care with acute renal failure.
    Fliser D, Kielstein JT.
    Curr Opin Crit Care; 2004 Dec; 10(6):483-8. PubMed ID: 15616390
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  • 5. A new method of post-dialysis blood urea sampling: the 'stop dialysate flow' method.
    Geddes CC, Traynor J, Walbaum D, Fox JG, Mactier RA.
    Nephrol Dial Transplant; 2000 Apr; 15(4):517-23. PubMed ID: 10727547
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  • 7. Continuous veno-venous haemodialysis with a novel bicarbonate dialysis solution: prospective cross-over comparison with a lactate buffered solution.
    Zimmerman D, Cotman P, Ting R, Karanicolas S, Tobe SW.
    Nephrol Dial Transplant; 1999 Oct; 14(10):2387-91. PubMed ID: 10528662
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  • 8. Efficacy and cardiovascular tolerability of extended dialysis in critically ill patients: a randomized controlled study.
    Kielstein JT, Kretschmer U, Ernst T, Hafer C, Bahr MJ, Haller H, Fliser D.
    Am J Kidney Dis; 2004 Feb; 43(2):342-9. PubMed ID: 14750100
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  • 9. Catabolism in critical illness: estimation from urea nitrogen appearance and creatinine production during continuous renal replacement therapy.
    Leblanc M, Garred LJ, Cardinal J, Pichette V, Nolin L, Ouimet D, Geadah D.
    Am J Kidney Dis; 1998 Sep; 32(3):444-53. PubMed ID: 9740161
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  • 10. Effects of dialysate flow configurations in continuous renal replacement therapy on solute removal: computational modeling.
    Kim JC, Cruz D, Garzotto F, Kaushik M, Teixeria C, Baldwin M, Baldwin I, Nalesso F, Kim JH, Kang E, Kim HC, Ronco C.
    Blood Purif; 2013 Sep; 35(1-3):106-11. PubMed ID: 23343554
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  • 11. Continuous arteriovenous haemodialysis in critically ill patients.
    Stevens PE, Riley B, Davies SP, Gower PE, Brown EA, Kox W.
    Lancet; 1988 Jul 16; 2(8603):150-2. PubMed ID: 2899198
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  • 12. Continuous veno-venous hemofiltration with dialysis removes cytokines from the circulation of septic patients.
    Bellomo R, Tipping P, Boyce N.
    Crit Care Med; 1993 Apr 16; 21(4):522-6. PubMed ID: 8472571
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  • 13. Vascular reactivity during haemodialysis and isolated ultrafiltration: thermal influences.
    van Kuijk WH, Luik AJ, de Leeuw PW, van Hooff JP, Nieman FH, Habets HM, Leunissen KM.
    Nephrol Dial Transplant; 1995 Oct 16; 10(10):1852-8. PubMed ID: 8592593
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  • 14. Pharmacokinetics of ertapenem in critically ill patients with acute renal failure undergoing extended daily dialysis.
    Burkhardt O, Hafer C, Langhoff A, Kaever V, Kumar V, Welte T, Haller H, Fliser D, Kielstein JT.
    Nephrol Dial Transplant; 2009 Jan 16; 24(1):267-71. PubMed ID: 18723863
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  • 20. Ionic dialysance: a new valid parameter for quantification of dialysis efficiency in acute renal failure?
    Ridel C, Osman D, Mercadal L, Anguel N, Petitclerc T, Richard C, Vinsonneau C.
    Intensive Care Med; 2007 Mar 16; 33(3):460-5. PubMed ID: 17235509
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