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133 related items for PubMed ID: 20639626
1. Contribution of residual renal function on peritoneal solute transport in dialysis patients. Matsuda A, Matsumura O, Ogawa T, Tayama Y, Motojima M, Maeda T, Noiri C, Kanouzawa K, Katou H, Hasegawa H, Mitarai T. Am J Nephrol; 2010; 32(3):187-193. PubMed ID: 20639626 [Abstract] [Full Text] [Related]
2. Systemic and intraperitoneal interleukin-6 system during the first year of peritoneal dialysis. Pecoits-Filho R, Carvalho MJ, Stenvinkel P, Lindholm B, Heimbürger O. Perit Dial Int; 2006; 26(1):53-63. PubMed ID: 16538876 [Abstract] [Full Text] [Related]
3. Association between inflammation and changes in residual renal function and peritoneal transport rate during the first year of dialysis. Chung SH, Heimbürger O, Stenvinkel P, Bergström J, Lindholm B. Nephrol Dial Transplant; 2001 Nov; 16(11):2240-5. PubMed ID: 11682675 [Abstract] [Full Text] [Related]
4. Evaluation of peritoneal transport properties at onset of peritoneal dialysis and longitudinal follow-up. Clerbaux G, Francart J, Wallemacq P, Robert A, Goffin E. Nephrol Dial Transplant; 2006 Apr; 21(4):1032-9. PubMed ID: 16364990 [Abstract] [Full Text] [Related]
5. Longitudinal relationship between solute transport and ultrafiltration capacity in peritoneal dialysis patients. Davies SJ. Kidney Int; 2004 Dec; 66(6):2437-45. PubMed ID: 15569337 [Abstract] [Full Text] [Related]
6. Association between an increased surface area of peritoneal microvessels and a high peritoneal solute transport rate. Numata M, Nakayama M, Nimura S, Kawakami M, Lindholm B, Kawaguchi Y. Perit Dial Int; 2003 Dec; 23(2):116-22. PubMed ID: 12713076 [Abstract] [Full Text] [Related]
7. Predictors of Residual Renal Function Decline in Peritoneal Dialysis Patients: The balANZ Trial. Htay H, Cho Y, Pascoe EM, Darssan D, Hawley C, Johnson DW, balANZ trial investigators. Perit Dial Int; 2017 Dec; 37(3):283-289. PubMed ID: 27935537 [Abstract] [Full Text] [Related]
8. Adequacy targets can be met in anuric patients by automated peritoneal dialysis: baseline data from EAPOS. Brown EA, Davies SJ, Heimbürger O, Meeus F, Mellotte G, Rosman J, Rutherford P, Van Bree M, European Automated Peritoneal Dialysis Outcomes Study (EAPOS) Investigators. Perit Dial Int; 2001 Dec; 21 Suppl 3():S133-7. PubMed ID: 11887807 [Abstract] [Full Text] [Related]
9. Intra-peritoneal interleukin-6 system is a potent determinant of the baseline peritoneal solute transport in incident peritoneal dialysis patients. Oh KH, Jung JY, Yoon MO, Song A, Lee H, Ro H, Hwang YH, Kim DK, Margetts P, Ahn C. Nephrol Dial Transplant; 2010 May; 25(5):1639-46. PubMed ID: 20061317 [Abstract] [Full Text] [Related]
10. Baseline peritoneal solute transport rate is not associated with markers of systemic inflammation or comorbidity in incident Korean peritoneal dialysis patients. Oh KH, Moon JY, Oh J, Kim SG, Hwang YH, Kim S, Lee JS, Ahn C. Nephrol Dial Transplant; 2008 Jul; 23(7):2356-64. PubMed ID: 18178604 [Abstract] [Full Text] [Related]
11. A multinational clinical validation study of PD ADEQUEST 2.0. PD ADEQUEST International Study Group. Vonesh EF, Story KO, O'Neill WT. Perit Dial Int; 1999 Jul; 19(6):556-71. PubMed ID: 10641777 [Abstract] [Full Text] [Related]
12. Dialysate copeptin and peritoneal transport in incident peritoneal dialysis patients. Fijałkowski M, Safranow K, Lindholm B, Ciechanowski K, Muraszko AM, Dołęgowska B, Dołęgowska K, Golembiewska E. Int Urol Nephrol; 2019 Sep; 51(9):1667-1673. PubMed ID: 31187425 [Abstract] [Full Text] [Related]
13. Roles of peritoneal clearance and residual kidney removal in control of uric acid in patients on peritoneal dialysis. Xiao X, Ye H, Yi C, Lin J, Peng Y, Huang X, Wu M, Wu H, Mao H, Yu X, Yang X. BMC Nephrol; 2020 Apr 25; 21(1):148. PubMed ID: 32334567 [Abstract] [Full Text] [Related]
14. Effects of interleukin-6 T15A single nucleotide polymorphism on baseline peritoneal solute transport rate in incident peritoneal dialysis patients. Hwang YH, Son MJ, Yang J, Kim K, Chung W, Joo KW, Kim Y, Ahn C, Oh KH. Perit Dial Int; 2009 Apr 25; 29(1):81-8. PubMed ID: 19164257 [Abstract] [Full Text] [Related]
15. ISPD recommendations for the evaluation of peritoneal membrane dysfunction in adults: Classification, measurement, interpretation and rationale for intervention. Morelle J, Stachowska-Pietka J, Öberg C, Gadola L, La Milia V, Yu Z, Lambie M, Mehrotra R, de Arteaga J, Davies S. Perit Dial Int; 2021 Jul 25; 41(4):352-372. PubMed ID: 33563110 [Abstract] [Full Text] [Related]
16. Peritoneal solute transport rate as an independent risk factor for total and cardiovascular mortality in a population of peritoneal dialysis patients. Janda K, Krzanowski M, Dumnicka P, Kuśnierz-Cabala B, Miarka P, Sułowicz W. Adv Perit Dial; 2014 Jul 25; 30():15-20. PubMed ID: 25338416 [Abstract] [Full Text] [Related]
17. Comparison of peritoneal equilibration test with 2.27% and 3.86% glucose dialysis solution. Cara M, Virga G, Mastrosimone S, Girotto A, Rossi V, D'Angelo A, Bonfante L. J Nephrol; 2005 Jul 25; 18(1):67-71. PubMed ID: 15772925 [Abstract] [Full Text] [Related]
18. A Large Intraperitoneal Residual Volume Hampers Adequate Volumetric Assessment of Osmotic Conductance to Glucose. Clause AL, Keddar M, Crott R, Darius T, Fillee C, Goffin E, Morelle J. Perit Dial Int; 2018 Jul 25; 38(5):356-362. PubMed ID: 29674410 [Abstract] [Full Text] [Related]
19. Peritoneal solute transport and inflammation. Davies SJ. Am J Kidney Dis; 2014 Dec 25; 64(6):978-86. PubMed ID: 25176170 [Abstract] [Full Text] [Related]
20. Ultrafiltration and small solute transport at initiation of PD: questioning the paradigm of peritoneal function. Selgas R, Bajo MA, Cirugeda A, del Peso G, Valdés J, Castro MJ, Sánchez S, Fernández-Reyes MJ, Hevia C, Gil F, Aguilera A, Ortiz J, Alegre L, Alvarez V, Sánchez-Tomero JA. Perit Dial Int; 2005 Dec 25; 25(1):68-76. PubMed ID: 15770928 [Abstract] [Full Text] [Related] Page: [Next] [New Search]