Quantification of free water transport in peritoneal dialysis.BackgroundIn peritoneal dialysis (PD) total net ultrafiltration (NUF) is dependent on transport through small pores and through water channels in the peritoneum. These channels are impermeable to solutes, and therefore, crystalloid osmotic-induced free water transport occurs through them. Several indirect methods to assess free water transport have been suggested. The difference in NUF between a 3.86% and a 1.36% solution gives a rough indication, but is very time consuming. The magnitude of the dip in dialysate/plasma (D/P) sodium in the initial phase of a 3.86% exchange is another way to estimate free water transport. In the present study, a method was applied to calculate free...
INTRODUCTION: The osmotic conductance to glucose (OCG) is a crucial determinant of ultrafiltration (...
Optimization of peritoneal dialysis schedule and dialysis fluid composition needs, among others, met...
The peritoneal equilibration test (PET) with 3.86% glucose concentration (3.86%-PET) has been sugges...
Quantification of free water transport in peritoneal dialysis.BackgroundIn peritoneal dialysis (PD) ...
The contribution of free water transport and small pore transport to the total fluid removal in peri...
Mini-peritoneal equilibration test: A simple and fast method to assess free water and small solute t...
OBJECTIVE: Free water transport (FWT) can be calculated after a dwell of 1 hour with a 3.86% glucose...
A quantitative analysis of sodium transport and removal during peritoneal dialysis. To quantitativel...
¤ Background: Evaluation of free water transport is a tool for assessing aquaporin function in perit...
A quantitative description of solute and fluid transport during peritoneal dialysis. To investigate ...
Background. The development of fluid and salt retention is a potential problem for all peritoneal di...
Ultrafiltration (UF) failure is one of the most important causes of long-term peritoneal dialysis (P...
Ultrafiltration and solute kinetics using low sodium peritoneal dialysate. Low sodium peritoneal dia...
Introduction: The osmotic conductance to glucose (OCG) is a crucial determinant of ultrafiltration (...
BACKGROUND: Water transport in peritoneal dialysis occurs through small pores and aquaporins. Free w...
INTRODUCTION: The osmotic conductance to glucose (OCG) is a crucial determinant of ultrafiltration (...
Optimization of peritoneal dialysis schedule and dialysis fluid composition needs, among others, met...
The peritoneal equilibration test (PET) with 3.86% glucose concentration (3.86%-PET) has been sugges...
Quantification of free water transport in peritoneal dialysis.BackgroundIn peritoneal dialysis (PD) ...
The contribution of free water transport and small pore transport to the total fluid removal in peri...
Mini-peritoneal equilibration test: A simple and fast method to assess free water and small solute t...
OBJECTIVE: Free water transport (FWT) can be calculated after a dwell of 1 hour with a 3.86% glucose...
A quantitative analysis of sodium transport and removal during peritoneal dialysis. To quantitativel...
¤ Background: Evaluation of free water transport is a tool for assessing aquaporin function in perit...
A quantitative description of solute and fluid transport during peritoneal dialysis. To investigate ...
Background. The development of fluid and salt retention is a potential problem for all peritoneal di...
Ultrafiltration (UF) failure is one of the most important causes of long-term peritoneal dialysis (P...
Ultrafiltration and solute kinetics using low sodium peritoneal dialysate. Low sodium peritoneal dia...
Introduction: The osmotic conductance to glucose (OCG) is a crucial determinant of ultrafiltration (...
BACKGROUND: Water transport in peritoneal dialysis occurs through small pores and aquaporins. Free w...
INTRODUCTION: The osmotic conductance to glucose (OCG) is a crucial determinant of ultrafiltration (...
Optimization of peritoneal dialysis schedule and dialysis fluid composition needs, among others, met...
The peritoneal equilibration test (PET) with 3.86% glucose concentration (3.86%-PET) has been sugges...