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1.
[Systemic and intraperitoneal inflammation in peritoneal dialysis patients]. / Systémová a intraperitoneální inflamace u peritoneálne dialyzovaných pacientu.
Vnitr Lek
; 62 Suppl 6: 58-61, 2016.
Article
in Czech
| MEDLINE | ID: mdl-28124933
2.
Asymmetric dimethylarginine in hemodialysis, hemodiafiltration, and peritoneal dialysis.
Artif Organs
; 34(5): 420-5, 2010 May.
Article
in English
| MEDLINE | ID: mdl-20633156
3.
Cell-free plasma DNA during Hemodialysis.
Ren Fail
; 31(6): 475-80, 2009.
Article
in English
| MEDLINE | ID: mdl-19839825
4.
Acid-base balance in peritoneal dialysis patients: a Stewart-Fencl analysis.
Ren Fail
; 31(8): 625-32, 2009.
Article
in English
| MEDLINE | ID: mdl-19817518
5.
Development of peritoneal dialysis and renal replacement therapy in the Czech Republic since the postcommunist transition.
Perit Dial Int
; 27(2): 196-202, 2007.
Article
in English
| MEDLINE | ID: mdl-17299158
6.
Effects of Icodextrin and Glucose Bicarbonate/Lactate-Buffered Peritoneal Dialysis Fluids on Effluent Cell Population and Biocompatibility Markers IL-6 and CA125 in Incident Peritoneal Dialysis Patients.
Ther Apher Dial
; 20(2): 149-57, 2016 Apr.
Article
in English
| MEDLINE | ID: mdl-26929256
7.
Importance of serum [Na+] and [Cl-] difference in acid-base status classification.
Anesth Analg
; 111(1): 243; author reply 243-4, 2010 Jul.
Article
in English
| MEDLINE | ID: mdl-20576972
8.
Procalcitonin levels in peritoneal dialysis patients.
Perit Dial Int
; 25(5): 470-2, 2005.
Article
in English
| MEDLINE | ID: mdl-16178480
9.
Low glucose degradation product peritoneal dialysis regimen is associated with lower plasma EN-RAGE and HMGB-1 proinflammatory ligands of receptor for advanced glycation end products.
Ther Apher Dial
; 18(3): 309-16, 2014 Jun.
Article
in English
| MEDLINE | ID: mdl-24965297
10.
The contribution of Professor Karel Opatrný Jr., MD, DSc. (1954-2006) to nephrology.
G Ital Nefrol
; 35(Suppl 70): 122-124, 2018 Feb.
Article
in English
| MEDLINE | ID: mdl-29482291
11.
Intraperitoneal IL-6 signaling in incident patients treated with icodextrin and glucose bicarbonate/lactate-based peritoneal dialysis solutions.
Perit Dial Int
; 32(1): 37-44, 2012.
Article
in English
| MEDLINE | ID: mdl-22302924
12.
Plasma proteome profiling of von Hippel-Lindau disease after total and subtotal nephrectomy: a preliminary study.
Clin Biochem
; 43(1-2): 142-9, 2010 Jan.
Article
in English
| MEDLINE | ID: mdl-19715686
13.
Effect of icodextrin-based dialysis solution on peritoneal leptin clearance.
Perit Dial Int
; 23(1): 89-91, 2003.
Article
in English
| MEDLINE | ID: mdl-12691516
14.
Computed tomography-based assessment of bone mineral density in patients treated with peritoneal dialysis.
Perit Dial Int
; 23(6): 601-3, 2003.
Article
in English
| MEDLINE | ID: mdl-14703206
15.
Determinants of prevalent vertebral fractures and progressive bone loss in long-term hemodialysis patients.
J Bone Miner Metab
; 27(2): 217-23, 2009.
Article
in English
| MEDLINE | ID: mdl-19172222
16.
Cell-free plasma DNA during peritoneal dialysis and hemodialysis and in patients with chronic kidney disease.
Ann N Y Acad Sci
; 1137: 296-301, 2008 Aug.
Article
in English
| MEDLINE | ID: mdl-18837963
17.
Pharmacokinetics and pharmacodynamics of intravenous and subcutaneous continuous erythropoietin receptor activator (C.E.R.A.) in patients with chronic kidney disease.
Clin J Am Soc Nephrol
; 1(6): 1211-5, 2006 Nov.
Article
in English
| MEDLINE | ID: mdl-17699350
18.
A case study on peritoneal dialysis with biocompatible peritoneal dialysis fluid: increase in submesothelial compact zone thickness but not vessel density.
Ther Apher Dial
; 14(4): 438-41, 2010 Aug 01.
Article
in English
| MEDLINE | ID: mdl-20649768
19.
Peritoneal clearance and transport of procalcitonin.
Ther Apher Dial
; 13(5): 451-2, 2009 Oct.
Article
in English
| MEDLINE | ID: mdl-19788464
20.
Tissue factor, its pathway inhibitor, and metabolic disturbances in long-term peritoneal dialysis.
Kidney Blood Press Res
; 26(5-6): 368-75, 2003.
Article
in English
| MEDLINE | ID: mdl-14610342