PriceC.G., SukiW.N.Newer modifications of peritoneal dialysis: Options in the treatment of patients with renal failure.Am J Nephrol.1981; 1: 97–104.
5.
McCombJ., MortonA.R., SingerM.A., HopmanW.M., MacKenzieT.Impact of portable APD on patient perception of health-related quality of life. In: KhannaR., ed. Advances in Peritoneal Dialysis.Toronto: Peritoneal Dialysis Publications, 1997; 13: 137–40.
6.
United States Renal Data System.Annual data report. CD ROM version, 1997.
KeshaviahP., EmersonP.F., VoneshE.F., BrandesJ.C.Relationship between body size, fill volume, and mass transfer area coefficient in peritoneal dialysis.J Am Soc Nephrol.1994; 4: 1820–6.
11.
DurandP.Y., ChanliauJ., GamberoniJ., HestinD., KesslerM.APD: Clinical measurement of the maximal acceptable intraperitoneal volume. In: KhannaR., ed. Advances in Peritoneal Dialysis.Toronto: Peritoneal Dialysis Publications, 1994; 10: 63–7.
BrandesJ.C., PackardW.J., WattersS.K., FritscheC.Op -timization of dialysate flow and mass transfer during automated peritoneal dialysis.Am J Kidney Dis.1995; 25: 603–10.
FreidaP.H., IssadB., AllouacheM.Relationships between fill volume, small solute clearances, and net ultrafiltration during a standardized APD program [Abstract].Perit Dial Int.1998; 18: 124.
25.
National Kidney Foundation Dialysis Outcomes Quality Initiative.Computer-assisted kinetic modeling approach to achieving target doses of peritoneal dialysis. Clinical practice guidelines for peritoneal dialysis adequacy.Am J Kidney Dis.1997; 30(Suppl 2): S90–2.
26.
VoneshE.F., LysaghtM.J., MoranJ., FarrellP.Kinetic modeling as a prescription aid in peritoneal dialysis.Blood Purif.1991; 9: 246–70.
27.
VoneshE.F., BurkartJ., McMurrayS.D., WilliamsP.F.Peritoneal dialysis kinetic modeling: Validation in a multicenter clinical study.Perit Dial Int.1996; 16: 471–81.
28.
RippeB., StelinG., HaraldssonB.Computer simulations of peritoneal fluid transport in CAPD.Kidney Int.1991; 40: 315–25.
29.
HaraldssonB.Assessing the peritoneal dialysis capacities of individual patients.Kidney Int.1995; 47: 1187–98.
GotchF.A., LippsB.J., KeenM.L., PanlilioF.Computerized urea kinetic modeling to prescribe and monitor delivered Kt/V (pKt/V, dKt/V) in peritoneal dialysis. In: KhannaR., ed. Advances in Peritoneal Dialysis.Toronto: Peritoneal Dialysis Publications, 1996; 12: 43–5.
32.
AmiciG., MastrosimoneS., Da RinG., BocciC., BonadonnaA.Clinical validation of PD Adequest software: Modeling error assessment.Perit Dial Int.1998; 18: 317–21.
33.
VerrinaE., AmiciG., PerfumoF., TrivelliA., CanepaA., GusmanoR.The use of the PD Adequest mathematical model in pediatric patients on chronic peritoneal dialysis.Perit Dial Int.1998; 18: 322–8.
34.
KeshaviahP.R., NolphK.D., van StoneJ.C.The peak urea concentration hypothesis: A urea kinetic approach to comparing the adequacy of CAPD and hemodialysis.Perit Dial Int.1989; 9: 257–60.
35.
National Kidney Foundation Dialysis Outcomes Quality Initiative.III. Measurement of peritoneal dialysis dose. Clinical practice guidelines for peritoneal dialysis adequacy.Am J Kidney Dis.1997; 30(Suppl 2): S80–2.
36.
National Kidney Foundation Dialysis Outcomes Quality Initiative.v: Adequate dose of peritoneal dialysis. Clinical practice guidelines for peritoneal dialysis adequacy.Am J Kidney Dis.1997; 30(Suppl 2): S86–92.
37.
KeshaviahP.R., StarR.A.A new approach to dialysis quantification: An adequacy index based on solute removal.Semin Dial.1994; 7: 85–90.
38.
KeshaviahP.R.The solute removal index -A unified basis for comparing disparate therapies.Perit Dial Int.1995; 15: 101–4.
39.
RoncoC., BoschJ.P., LewS.Q., FerianiM., ChiaramonteS., ConzP.Adequacy of continuous ambulatory peritoneal dialysis: Comparison with other dialysis techniques.Kidney Int.1994; 46(Suppl 48): S18–24.
40.
AmiciG., CalzavaraP., Da RinG., BocciC., CalconiG.Solute removal index (SRI) and equivalent renal clearance (EKR) for dialysis dose quantification in CAPD, APD and standard HD [Abstract].Perit Dial Int.1998; 18(Suppl 1): S11.
41.
CanaudB., GarredL.J., ArgilesA., FlavierJ.L., BoulouxC., MionC.Creatinine kinetic modelling: A simple and reliable tool for the assessment of protein nutritional status in haemodialysis patients.Nephrol Dial Trans plant.1995; 10: 1405–10.
42.
AmiciG., VirgaG., Da RinG., BocciC.Kt/V target calculation in automated tidal PD treatment using solute removal index [Abstract].Perit Dial Int.1998; 18: 101.
43.
ChenH.H., ShettyA., AfthentopoulosI.E., OreopoulosD.G.Discrepancy between weekly Kt/V and weekly creatinine clearances in patients on CAPD. In: KhannaR., ed. Advances in Peritoneal Dialysis.Toronto: Peritoneal Dialysis Publications, 1995; 11: 83–7.
44.
TzamaloukasA.H., MurataG.H., PirainoB., RaoP., BernardiniJ., MahotraD.Peritoneal urea and creatinine clearance in continuous peritoneal dialysis patients with different types of peritoneal solute transport.Kidney Int.1998; 53: 1405–11.
45.
MehrotraR., SaranR., NolphK.D., MooreH.L., KhannaR.Evidence that urea is a better surrogate marker of uremic toxicity than creatinine.ASAIO J.1997; 43(5): M858–61.
46.
AmiciG., MastrosimoneS., VirgaG., Da RinG., BocciC.Variability of adequacy indices derived from 24h collections in APD [Abstract].Perit Dial Int.1998; 18: 101.
47.
RodbyR.A., FiranekC.A., ChengY.G., KorbetS.M.Reproducibility of studies of peritoneal dialysis adequacy.Kidney Int.1996; 50: 267–71.
48.
ChurchillD.N., TaylorD.W., KeshaviahP.R.Adequacy of dialysis and nutrition in continuous peritoneal dialysis: Association with clinical outcomes.J Am Soc Nephrol.1996; 7: 198–207.
49.
Diaz-BuxoJ.A.Enhancement of peritoneal dialysis: The PD plus concept.Am J Kidney Dis.1996; 27: 92–8.
50.
KorbetS.M., VoneshE.F., FiranekC.A.Peritonitis in an urban peritoneal dialysis program: An analysis of infecting pathogens.Am J Kidney Dis.1995; 26: 47–53.
51.
Vande WalleJ., RaesA., CastilloD., Lutz-DettingerN., DejaegherA.Advantages of HCO3 solution with low sodium concentration over standard lactate solutions for acute peritoneal dialysis. In: KhannaR., ed. Advances in Peritoneal Dialysis.Toronto: Peritoneal Dialysis Publications, 1997; 13: 179–82.
52.
StruijkD.G., DoumaC.E.Future research in peritoneal dialysis fluids.Semin Dial.1998; 11: 207–12.
53.
CanepaA., PerfumoF., CarreaA., VerrinaE., MenoniS., TrivelliA.Long-term effects of amino acid solutions in children on automated peritoneal dialysis [Abstract].J Am Soc Nephrol.1996; 7: 1441.
54.
LeblancM., MorenoL., RobinsonO., TapolyaiM., PaganiniE.P.Bicarbonate dialysate for continuous renal replacement therapy [Abstract].J Am Soc Nephrol.1995; 6: 497.
55.
AshS.R., JanleE.M.Continuous flow-through peritoneal dialysis (CFPD): Comparison of efficiency to IPD, TPD, and CAPD in an animal model.Perit Dial Int.1997; 17: 365–72.
56.
SteeleM., KwanJ.T.Potential problem: Delayed detection of peritonitis by patients receiving home automated peritoneal dialysis.Perit Dial Int.1997; 17: 617.