Inverse size exclusion chromatography (i-SEC) was used to characterize three different cellulosic hollow fiber hemodialysis membranes, i.e. low-flux cuprophan and hemophan and high-flux RC-HP400A. With the i-SEC technique the pore size distribution and porosity of a membrane can be determined and adsorption phenomena can be studied. The membranes showed clear differences in pore size and porosity, the high-flux RC-HP400A membrane has a larger pore size as well as a higher porosity. For all the membranes it was found that the elution curves were best described by a homoporous pore volume distribution. It appeared that the bound or non-freezing water in the membranes was at least partly accessible to solutes. The test molecules creatinine and...
High retention onset (HRO) is the designation for a new class of hemodialysis membranes. A unique ch...
High retention onset (HRO) is the designation for a new class of hemodialysis membranes. A unique ch...
High retention onset (HRO) is the designation for a new class of hemodialysis membranes. A unique ch...
Since the late 1960s cellulosic hollow-fiber membranes have been used in artificial kidneys, in whic...
The effect of two commonly used sterilization methods for artificial kidneys on the morphology and p...
Characterization of hemodialysis membranes by inverse size exclusion chromatograph
In this study, the polyvinylidene fluoride (PVDF) hollow fiber hemodialysis membranes were prepared ...
The objective of this study was to develop a new measurement technique for the determination of pore...
The objective of this study was to develop a new measurement technique for the determination of pore...
Effect of membrane composition and structure on solute removal and biocompatibility in hemodialysis....
The objective of this study was to develop a new measurement technique for the determination of pore...
The development of wearable artificial kidney demands an efficient dialysate recovery, which relies ...
The present work is focused on the synthesis and characterization of novel materials for hemodialysi...
Hemodialysis is a membrane-based process in which solute transport from the patient’s blood to a rin...
The development of an efficient and cost-effective purification process is the objective of protein ...
High retention onset (HRO) is the designation for a new class of hemodialysis membranes. A unique ch...
High retention onset (HRO) is the designation for a new class of hemodialysis membranes. A unique ch...
High retention onset (HRO) is the designation for a new class of hemodialysis membranes. A unique ch...
Since the late 1960s cellulosic hollow-fiber membranes have been used in artificial kidneys, in whic...
The effect of two commonly used sterilization methods for artificial kidneys on the morphology and p...
Characterization of hemodialysis membranes by inverse size exclusion chromatograph
In this study, the polyvinylidene fluoride (PVDF) hollow fiber hemodialysis membranes were prepared ...
The objective of this study was to develop a new measurement technique for the determination of pore...
The objective of this study was to develop a new measurement technique for the determination of pore...
Effect of membrane composition and structure on solute removal and biocompatibility in hemodialysis....
The objective of this study was to develop a new measurement technique for the determination of pore...
The development of wearable artificial kidney demands an efficient dialysate recovery, which relies ...
The present work is focused on the synthesis and characterization of novel materials for hemodialysi...
Hemodialysis is a membrane-based process in which solute transport from the patient’s blood to a rin...
The development of an efficient and cost-effective purification process is the objective of protein ...
High retention onset (HRO) is the designation for a new class of hemodialysis membranes. A unique ch...
High retention onset (HRO) is the designation for a new class of hemodialysis membranes. A unique ch...
High retention onset (HRO) is the designation for a new class of hemodialysis membranes. A unique ch...