GokalR.Fluid management and cardiovascular outcome in peritoneal dialysis patients.Semin Dial1999; 12: 126–32.
2.
SaldanhaL.F., WeilerE.W.J., GonickH.C.Effect of continuous ambulatory peritoneal dialysis on blood pressure control.Am J Kidney Dis1993; 21: 184–8.
3.
ColesG.A.Have we underestimated the importance of fluid balance for the survival of PD patients.Perit Dial Int1997; 17: 321–6.
4.
SchwengerV., RitzE.Audit of antihypertensive treatment in patients with renal failure.Nephrol Dial Transplant1998; 13: 3091–5.
5.
CocchiR., EspositoE., FabbriA., LucatelloA., SturaniA., QuarelloF.Prevalence of hypertension in patients on peritoneal dialysis: Results of an Italian multicentre study.Nephrol Dial Transplant1999; 14: 1536–40.
6.
KawaguchiY., HasegawaT., NakayamaM., KuboH., ShigematuT.Issues affecting the longevity of the continuous peritoneal dialysis therapy.Kidney Int1997; 52(Suppl 62): S105–7.
7.
MujaisS.K., IngT., KjellstrandJ.Acute complications during hemodialysis. In: JacobsC., KjellstrandC.M., KochK.M., WinchesterJ.F., eds. Replacement of renal function by dialysis. 4th ed.Dordrecht: Kluwer Academic, 1996: 688–725.
8.
MujaisSK, IsmailN.Complications during hemodialysis. In: MallucheH.H., SawayaB.P., HakimR.M., SayeghM.H., eds. Clinical nephrology, dialysis and transplantation.Deisenhofen, Germany: Dustri–Verlag, 1999.
9.
LysaghtM.J., VoneshE.F., GotchF., IbelsL., KeenM., LindholmB.The influence of dialysis treatment modality on the decline of remaining residual renal function.Trans Am Soc Artif Intern Organs1991; 37: 598–604.
10.
FineA., FontaineB., MaM.Commonly prescribed salt intake in continuous ambulatory peritoneal dialysis is too restrictive: Results of a double-blind crossover study.J Am Soc Nephrol1997; 8: 1311–14.
11.
MujaisS.K., MayberN., SchulzD., HutchcraftA.M.Timely initiation of dialysis by DOQI guidelines: Maintenance of residual renal function. Proceedings of the American Society of Nephrology, Miami Beach, FL, November 5–8, 1999.
12.
MedcalfeJ.F., HarrisK.P.G., WallsJ.Frusemide increases urine volume but does not preserve residual renal function in patients on CAPD — results of a six months randomized controlled study (Abstract).Perit Dial Int1998; 18(Suppl 2): S1.
FallerB., MarichalJ.F.Loss of ultrafiltration in continuous ambulatory peritoneal dialysis. A role for acetate.Perit Dial Bull1984; 4: 10.
15.
BazzatoG., ColiU., LandiniS., LucatellaS., FracassoA., RighettoF.Restoration of ultrafiltration capacity of peritoneal membrane in patients on CAPD.Int J Artif Organs1984; 7: 93.
16.
VergerC., LarpentL., CelicoutB.Clinical significance of ultrafiltration failure on CAPD. In: La GrecaG., ChiaramonteS., FabrisA., FerianiM., RoncoC., eds. Peritoneal dialysis.Milano: Wichtig Editore, 1986: 91–4.
17.
HeimbürgerO., WanieskiJ., WerynskiA., TranæusA., LindholmB.Peritoneal transport in CAPD patients with permanent loss of ultrafiltration capacity.Kidney Int1990; 38: 495–506.
18.
RoncoC., FerianaiM., ChiaramonteS., BrendolanA., BragantiniL., ConzP.Pathophysiology of ultra-filtration in peritoneal dialysis.Perit Dial Int1990; 10: 119.
19.
MactierR.A.Investigation and management of ultra-filtration failure in CAPD.Adv Perit Dial1991; 7: 57–62.
20.
KorbetS.M., RodbyR.A.Causes, diagnosis, and treatment of peritoneal membrane failure. In: HenrichW.L., ed. Principles and practice of dialysis. 2nd ed.Baltimore, MD: Williams and Wilkins, 1998: 185–206.
21.
KorbetS.M.Workup of ultrafiltration failure.Adv Ren Replace Ther1998; 5: 194–204.
22.
Diaz-BuxoJ.A.Management of peritoneal catheter malfunction.Perit Dial Int1998; 18: 256–9.
23.
LitherlandJ., GibsonM., SambrookP., LuptonE., BeamanM., AckrillP.Investigation and treatment of poor drains of dialysate fluid associated with anterior abdominal wall leaks in patients on chronic ambulatory peritoneal dialysis.Nephrol Dial Transplant1992; 7: 1030–4.
24.
LitherlandJ., LuptonE.W., AckrillP.A., VenningM., SambrookP.Computed tomographic peritoneography: CT manifestations in the investigation of leaks and abnormal collections in patients on CAPD.Nephrol Dial Transplant1994; 9: 1449–52.
25.
ScanzianiR., DozioB., CaimiF., De RossiN., MagfriF., SurianM.Peritoneography and peritoneal computerized tomography: A new approach to noninfectious complications of CAPD.Nephrol Dial Transplant1992; 7: 1035–8.
26.
CochranS.T., DoH.M., RonaghiA., NissensonA.R., KadellB.M.Complications of peritoneal dialysis: Evaluation with CT peritoneography.Radiographics1997; 17: 869–78.
27.
TzamaloukasA., GibelL., EisenbergB., GoldmanR., KanigS., ZagerP.Early and late peritoneal leaks in patients on CAPD.Adv Perit Dial1990; 6: 64–71.
28.
TwardowskiZ.J., TullyR., NicholsW.Computerized tomography CT in the diagnosis of subcutaneous leak sites during continuous ambulatory peritoneal dialysis (CAPD).Perit Dial Bull1984; 4: 163–6.
29.
SchultzS., HarmonT., NachtnebelK.Computerized tomographic scanning with intraperitoneal contrast enhancement in a CAPD patient with localized edema.Perit Dial Bull1984; 4: 253–4.
30.
WankowiczZ., PietrzakB., PrzedlackiJ.Colloid peritoneoscintigraphy in complications of CAPD. In: KhannaR., NolphK.D., ProwantB.F., TwardowskiZ.J., OreopoulosD.G., eds. Advances in CAPD.Toronto: Peritoneal Dialysis Bulletin, 1988; 4: 138–43.
SchleiferC., ZiemekH., TeehanB., BenzR., SiglerM., GilgoreG.Migration of peritoneal catheters: Personal experience and survey of 72 other units.Perit Dial Bull1987; 7: 189–93.
PannekeetM.M., ImholzA.L., StruijkD.G., KoomenG.C., LangedijkM.J., SchoutenN.The standard peritoneal permeability analysis: A tool for the assessment of peritoneal permeability characteristics in CAPD patients.Kidney Int1995; 48: 866–75.
35.
Ho-dac-PannekeetM.M., AtaseverB., StruijkD.G., KredietR.T.Analysis of ultrafiltration failure in peritoneal dialysis patients by means of standard peritoneal permeability analysis.Perit Dial Int1997; 17: 144–50.
36.
NolphK.D., TwardowskiZ.J., PopovichR.P., RubinJ.Equilibration of peritoneal dialysis solutions during long-dwell exchanges.J Lab Clin Med1979; 93: 246–56.
37.
VirgaG., AmiciG., da RinG., VianelloA., CalconiG., da PortoA.Comparison of fast peritoneal equilibration tests with 1.36 and 3.86% dialysis solutions.Blood Purif1994; 12: 113–20.
38.
SelgasR., BajoM.A., PaivaA., Del PesoG., DiazC., AguileraA.Stability of the peritoneal membrane in long-term peritoneal dialysis patients.Adv Ren Replace Ther1998; 5: 168–78.
39.
DaviesS.J., PhillipsL., RusselG.I.Peritoneal solute transport predicts survival on CAPD independently of residual renal function.Nephrol Dial Transplant1998; 13: 962–8.
40.
ChurchillD.N., ThorpeK.E., NolphK.D., KeshaviahP.R., PagéD., OreopoulosD.G.Increased peritoneal transport is associated with decreased CAPD technique and patient survival (Abstract).J Am Soc Nephrol1997; 8: 189A.
41.
WangT., HeimbürgerO., WaniewskiJ., BergströmJ., LindholmB.Increased peritoneal permeability is associated with decreased fluid and small-solute removal and higher mortality in CAPD patients.Nephrol Dial Transplant1998; 13: 1242–9.
42.
PanasiukE., PietrzakB., KlosM.Characteristics of peritoneum after peritonitis in peritonitis in CAPD patients. In: KhannaR., NolphK.D., ProwantB.F., TwardowskiZ.J., OreopoulosD.G., eds. Advances in CAPD.Toronto: Peritoneal Dialysis Bulletin, 1988; 4: 42.
43.
KredietR.T., ZuyderhoudtF.M.J., BoeschotenE.W., AriszL.Alterations in the peritoneal transport of water and solutes during peritonitis in continuous ambulatory peritoneal dialysis patients.Eur J Clin Invest1987; 17: 43–52.
44.
GotloibL., ShostakA., Bar-ShellaP., CohenR.Continuous mesothelial injury and regeneration during long-term peritoneal dialysis.Perit Dial Bull1987; 7: 148–55.
45.
Hagmolen of ten Have, W, Ho-dac-PannekeetMM, StruijkDG, KredietRTMesothelial regeneration after peritonitis in dialysis patients (Abstract).J Am Soc Nephrol1997; 8: 180A.
46.
PosthumaN., ter WeeP.M., DonkerA.J.M., PeersE.M., OeP.L., VerbrughH.A.Icodextrin use in CCPD patients during peritonitis: Ultrafiltration and serum disaccharide concentrations.Nephrol Dial Transplant1998; 13: 2341–4.
47.
KredietR.T., BoeschotenE.W., ZuyderhoudtF.M.J., AriszL.Peritoneal transport characteristics of water, low molecular weight solutes and proteins during long-term continuous ambulatory peritoneal dialysis.Perit Dial Bull1986; 6: 61–5.
48.
KredietR.T., ZemelD., ImholzA.L.T., KoomenG.C.M., StruijkD.G., AriszL.Indices of peritoneal permeability and surface area.Perit Dial Int1993; 13(Suppl 2): S31–4.
49.
KredietR.T., ZemelD., ImholzA.L.T., StruijkD.G.Impact of surface area and permeability on solute clearances.Perit Dial Int1994; 14(Suppl 3): S70–7.
50.
KredietR.T.Prevention and treatment of peritoneal dialysis membrane failure.Adv Ren Replace Ther1998; 5: 212.
51.
Ho-dac-PannekeetM.M., HiralallJ.K., StruijkD.G., KredietR.T.Longitudinal follow-up of CA 125 in peritoneal effluent.Kidney Int1997; 51: 888–93.
52.
WideroëF.E., SmebyL.C., MjålandS., DahlK., BergK.J., AasT.W.Long-term changes in transperitoneal water transport during continuous ambulatory peritoneal dialysis.Nephron1984; 38: 238–47.
53.
RottembourgJ., BrouardR., IssadB., AllouacheM., GhaliB., BoudjemaaA.Role of acetate in loss of ultrafiltration during CAPD.Contrib Nephrol1987; 57: 197–206.
54.
SelgasR., Fernandez–ReyesM.J., BosqueE., BajoM-A, BorregoF., JimenezC.Functional longevity of the human peritoneum: How long is continuous peritoneal dialysis possible? Results of a prospective medium long-term study.Am J Kidney Dis1994; 23: 64–73.
55.
DaviesS.J., BryanJ., PhillipsL., RusselG.I.Longitudinal changes in peritoneal kinetics: The effects of peritoneal dialysis and peritonitis.Nephrol Dial Transplant1996; 11: 448–56.
56.
LameireN., VanholderR., VeysD., LambertM.C., RingoirS.A longitudinal, five year survey of urea kinetic parameters in CAPD patients.Kidney Int1992; 42: 426–33.
57.
StruijkD.G., KredietR.T., KoomenG.C.M., BoeschotenE.W., HoekF.J., AriszL.A prospective study of peritoneal transport in CAPD patients.Kidney Int1994; 45: 1739–44.
58.
FallerB., LameireN.Evolution of clinical parameters and peritoneal function in a cohort of CAPD patients followed over 7 years.Nephrol Dial Transplant1994; 9: 280–6.
59.
VergerC., CelicoutB.Peritoneal permeability and encapsulating peritonitis.Lancet1985; 1: 986.
60.
KredietR.T., StruijkD.G., BoeschotenE.W., KoomenG.C.M., StouthardJ.M.L., HockF.J.The time course of peritoneal transport kinetics in continuous ambulatory peritoneal dialysis patients who develop sclerosing peritonitis.Am J Kidney Dis1989; 13: 299–307.
61.
HendriksPMEM, Ho-dac-PannekeetM.M., van GulikT.M., StruijkD.G., PhoaSSKS, SieL.Peritoneal sclerosis in chronic peritoneal dialysis patients: Analysis of clinical presentation, risk factors and peritoneal transport kinetics.Perit Dial Int1997; 17: 136–43.
62.
CampbellS., ClarkeP., HawleyC., WiganM., KerlinP., ButlerJ.Sclerosing peritonitis: Identification of diagnostic, clinical and radiological features.Am J Kidney Dis1994; 24: 819–25.
63.
MactierR., KhannaR., TwardowskiZ., NolphK.Contribution of lymphatic absorption to loss of ultra-filtration and solute clearances in continuous ambulatory peritoneal dialysis.J Clin Invest1987; 80: 1311–16.
64.
HeimbürgerO., WaniewskiJ., WerynskiA., Sun ParkM., LindholmB.Lymphatic absorption in CAPD patients with loss of ultrafiltration capacity.Blood Purif1995; 13: 327–39.
65.
AbensurH., RomaoJ., PradoE., KakehashiE., SabbagaE., MarcondesM.Use of dextran 70 to estimate peritoneal lymphatic absorption rate in CAPD.Adv Perit Dial1992; 8: 3–6.
66.
KredietR.T., StruijkD.G., KoomenG.C.M., AriszL.Peritoneal fluid kinetics during CAPD measured with intraperitoneal dextran 70.ASAIO Trans1991; 37: 662–7.
67.
MonquilM.C., ImholzA.L., StruijkD.J., KredietR.Does impaired transcellular water transport contribute to net ultrafiltration failure during CAPD?Perit Dial Int1995; 15: 42–8.
68.
RippeB., StelinG.Simulations of peritoneal solute transport during CAPD. Application of two pore formalism.Kidney Int1989; 35: 1234–44.
69.
RippeB., StelinG., HaraldssonB.Computer simulations of peritoneal transport in CAPD.Kidney Int1991; 40: 315–25.
70.
RippeB., SimonsenO., StelinG.Clinical implication of a three pore model of peritoneal transport.Adv Perit Dial1991; 7: 3–9.
71.
RippeB., KredietR.Peritoneal physiology — transport of solutes. In: GokalR., NolphK.D., eds. The textbook of peritoneal dialysis.Dordrecht: Kluwer Academic1994: 69–113.
72.
StelinG., RippeB.A phenomenological interpretation of the variation in dialysate volume with dwell time in CAPD.Kidney Int1990; 38: 465–72.
73.
VoneshE.F., RippeB.Net fluid absorption under membrane transport models of peritoneal dialysis.Blood Purif1992; 10: 209–26.
74.
FlessnerM.F.Peritoneal transport physiology: Insights from basic research.J Am Soc Nephrol1991; 2: 122–35.
75.
HasegawaH., KamijoT., TakahashiH., KagamiH., HayakawaH., HiraharaI.Regulation and localisation of peritoneal aquaporins expression during long-term peritoneal dialysis in rats (Abstract).J Am Soc Nephrol1998; 9: 19A.
76.
YangB., FolkessonH.G., YangJ., MaT., MatthayM.A., VerkmanS.A.Reduced osmotic water permeability of the peritoneal barrier in AQP1 knockout mice; AQP1 provides a ‘water-only’ pathway in peritoneal dialysis (Abstract).J Am Soc Nephrol1998; 9: 29A.
77.
CarlssonO., NielsenS., ZakariaE.R., RippeB.In vivo inhibition of transcellular water channels (aquaporin-1) during acute peritoneal dialysis in rats.Am J Physiol1996; 271: H2254–62.
78.
PannekeetM.M., MulderJ.B., WeeningJ.J., StruijkD.G., ZweersM.M., KredietR.T.Demonstrations of aquaporin-CHIP in peritoneal tissue of uremic and CAPD patients.Perit Dial Int1995; 15(Suppl 1): S54–7.
79.
Ho-dac-PannekeetM.M., KredietR.Water channels in the peritoneum.Perit Dial Int1996; 16: 255–9.
80.
GoffinE., CombetS., JamarF., CosynsJ-P, DevuystO.Expression of aquaporin-1 (AQP1) in a long-term peritoneal dialysis patient with impaired transcellular water transport.Am J Kidney Dis (in press).
81.
ChenT.W., KhannaR., MooreH., TwardowskiZ.J., NolphK.D.Sieving and reflection coefficients for sodium salts and glucose during peritoneal dialysis.J Am Soc Nephrol1991; 2: 1092–100.
82.
WaniewskiJ., HeimbürgerO., WerynskiA., LindholmB.Aqueous solute concentrations and evaluation of mass transport coefficients in peritoneal dialysis.Nephrol Dial Transplant1992; 7: 50–6.
83.
ZweersM.M., StruijkD.G., KredietR.T.Correcting sodium sieving for diffusion from the circulation (Abstract).Perit Dial Int1999; 19(Suppl 1): S12.
84.
MoistL.M., PortF.K., OrzolS.M., YoungE.W., OstbyeT., WolfeR.A.Predictors of loss of residual renal function among new dialysis patients.J Am Soc Nephrol2000; 11: 556–64.
85.
MirandaB., SelgasR., CeladillaO., MunozJ., Sanchez SiciliaL.Peritoneal resting and heparinization as an effective treatment for ultrafiltration failure in patients on CAPD.Contrib Nephrol1991; 89: 199–204.
86.
De AlvaroF., CastroM.J., DapenaF., BajoM.A., Fernandez–ReyesM.J., RomeroJ.R.Peritoneal resting is beneficial in peritoneal hyperpermeability and ultrafiltration failure.Adv Perit Dial1993; 9: 56–61.
87.
BurkhartJ., StallardR.Result of peritoneal membrane (PM) resting (R) on dialysate (d) CA125 levels and PET results (Abstract).Perit Dial Int1997; 17(Suppl 1): S5.
88.
Ho-dac-PannekeetM.M., StruijkD.G., KredietR.Improvement of transcellular water transport by treatment with glucose free dialysate in patients with ultrafiltration failure.Nephrol Dial Transplant1996; 11: 255.
89.
ImholzA.L.T., BrownC.B., KoomenG.C.M., AriszL., KredietR.T.The effect of glucose polymers on water removal and protein clearances during CAPD.Adv Perit Dial1993; 9: 25–30.
90.
Ho-dac-PannekeetM.M., SchoutenN., LangendijkM.J., HiralallJ.K., de WaartD.R., StruijkD.G.Peritoneal transport characteristics with glucose polymer based dialysate.Kidney Int1996; 50: 979–86.
91.
PeersE., GokalR.Icodextrin: Overview of clinical experience.Perit Dial Int1997; 17: 22–6.
92.
PeersE., GokalR.Icodextrin provides long dwell peritoneal dialysis and maintenance of intraperitoneal volume.Artif Organs1998; 22: 8–12.
93.
PosthumaN., ter WeeP.M., VerbrughH.A., OeP.L., PeersE., SayersJ.Icodextrin instead of glucose during the daytime dwell in CCPD increases ultrafiltration and 24-h dialysis creatinine clearance.Nephrol Dial Transplant1997; 12(Suppl 1): 550–3.
94.
WoodrowG., StablesG., OldroydR., GibsonJ., TurneyJ.H., BrownjohnA.M.Comparison of icodextrin and glucose solutions for the daytime dwell in automated peritoneal dialysis.Nephrol Dial Transplant1999; 14: 1530–5.
95.
WilkieM.E., PlantM.J., EdwardsL., BrownC.B.Icodextrin 7.5% dialysate solution (glucose polymer) in patients with ultrafiltration failure: Extension of technique survival.Perit Dial Int1997; 17: 84–7.
96.
SelgasR., BajoM.A., Del PesoG., JiménezC.Preserving the peritoneal dialysis membrane in long-term peritoneal dialysis patients.Semin Dial1995; 8: 326–32.
97.
KredietR.T.The peritoneal membrane in chronic peritoneal dialysis.Kidney Int1999; 55: 341–56.
RippeB., ZakariaE.R., CarlssonO.Theoretical analysis of osmotic agents in peritoneal dialysis: What size is an ideal osmotic agent?Perit Dial Int1996; 16(Suppl 1): S97–103.
100.
MactierR.A., KhannaR., MooreH., TwardowskiZ.J., NolphK.D.Pharmacological reduction of lymphatic absorption from the peritoneal cavity increases net ultra-filtration and solute clearances in peritoneal dialysis.Nephron1988; 50: 229–32.
101.
ChanP.C.K., TamS.C.F., RobinsonJ.D., YuL., IpM.S.M., ChanC.Y.Effect of phosphatidylcholine on ultra-filtration in patients on continuous ambulatory peritoneal dialysis.Nephron1991; 59: 100–3.
102.
MactierR.A., KhannaR., TwardowskiZ.J., MooreH., NolphK.D.Influence of phosphatidylcholine on lymphatic absorption during peritoneal dialysis in the rat.Perit Dial Int1988; 8: 179–86.
103.
StruijkD.G., van der ReijdenH.J., KredietR.T., KoomenG.C.M., AriszL.Effect of phosphatidylcholine on peritoneal transport and lymphatic absorption in a CAPD patient with sclerosing peritonitis.Nephron1989; 51: 577–8.
104.
Baranowska–DacaE., TorneliJ., PopovichR.P., MoncriefJ.W.Use of bethanechol chloride to increase available ultrafiltration in CAPD.Adv Perit Dial1995; 11: 69–72.