Open Journal of Nephrology

Open Journal of Nephrology

ISSN Print: 2164-2842
ISSN Online: 2164-2869
www.scirp.org/journal/ojneph
E-mail: ojneph@scirp.org
"Study of Dialyzer Membrane (Polyflux 210H) and Effects of Different Parameters on Dialysis Performance"
written by Md Shihamul Islam, Jerzy Szpunar,
published by Open Journal of Nephrology, Vol.3 No.3, 2013
has been cited by the following article(s):
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[1] Sequential estimation of creatinine removal by a haemodialyser
2021
[2] Modelling and Simulation of High Flux Hemodialyzer Membranes of Different Porosities to Identify The Optimal Membrane Design
2021
[3] A Study on Hemodialyzer Membranes using Finite Element Analysis
2020
[4] Computational Fluid Dynamics (CFD) Modeling and Simulation of Flow Regulatory Mechanism in Artificial Kidney Using Finite Element Method
2020
[5] Fluid structure interaction study on straight and undulated hollow fibre hemodialyser membranes
2020
[6] Assessment of removal and adsorption enhancement of high-flux hemodialyzers in convective therapies by a novel in vitro uremic matrix
2020
[7] Modelling of Blood and Dialysate Flow in Hollow-Fiber Hemodialyzers
2018
[8] Evaluation of the Toxin-to-Protein Binding Rates during Hemodialysis Using Sorbent-Loaded Mixed-Matrix Membranes
Applied Sciences, 2018
[9] FINITE ELEMENT ANALYSIS FOR COMPARING THE PERFORMANCE OF STRAIGHT AND UNDULATED FIBERS IN ALTERING THE FILTERING EFFICIENCY OF …
Journal of Mechanics in Medicine and Biology, 2018
[10] Investigation on Heat and Mass transfer in a Dialyzer Membrane Model for the Development of Dialysate Temperature Controller
2018
[11] Sensor Technologies for On-line Monitoring of Biological Parameters During Hemodialysis
2017
[12] Performance analysis of Polyvinylidene Fluoride and Polyflux dialysis membranes
2016
[13] Finite-element modeling of time-dependent sodium exchange across the hollow fiber of a hemodialyzer by coupling with a blood pool model.
2016
[14] Finite-element modeling of time-dependent sodium exchange across the hollow fiber of a hemodialyzer by coupling with a blood pool model
The International journal of artificial organs, 2016
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