The three-pore model of peritoneal fluid transport predicts that once the osmotic gradient has dissipated, fluid reabsorption will be due to a combination of small-pore reabsorption driven by the intravascular oncotic pressure, and an underlying disappearance of fluid from the cavity by lymphatic drainage. Our study measured fluid transport by these pathways in the presence and absence of an osmotic gradient. Paired hypertonic and standard glucose-dwell studies were performed using radio-iodinated serum albumin as an intraperitoneal volume marker and changes in intraperitoneal sodium mass to determine small-pore versus transcellular fluid transport. Disappearance of iodinated albumin was considered to indicate lymphatic drainage. Variabilit...
Water transport model during CAPD: Determination of parameters. To minimize the total amount of gluc...
Effect of an increased intraperitoneal pressure on fluid and solute transport during CAPD. The effec...
The relationship between epithelial fluid transport, standing osmotic gradients, and standing hydros...
The three-pore model of peritoneal fluid transport predicts that once the osmotic gradient has dissi...
Using the Sprague-Dawley female rat, a systems-level research proram was carried out to investigate ...
water reabsorption from the peritoneal cavity into the surrounding tissue substantially decreases th...
The partitioning of fluid flows among small and ultrasmall pores of the three-pore model in peritone...
This paper deals with the peritoneal microcirculation and with peritoneal exchange occurring in peri...
The partitioning of fluid flows among small and ultrasmall pores of the three-pore model in peritone...
Simulations of peritoneal solute transport during CAPD. Application of two-pore formalism. Blood per...
Hydraulically-induced convective solute transport across the rabbit peritoneum. Transport of solutes...
The contribution of free water transport and small pore transport to the total fluid removal in peri...
Measuring transport of water across the peritoneal membrane.IntroductionMechanisms of water flow acr...
The transport of macromolecules during peritoneal dialysis is highly selective when they move from b...
osmosis; pathophysiology; peritoneal dialysis Mathematical prediction of clinical events versus phys...
Water transport model during CAPD: Determination of parameters. To minimize the total amount of gluc...
Effect of an increased intraperitoneal pressure on fluid and solute transport during CAPD. The effec...
The relationship between epithelial fluid transport, standing osmotic gradients, and standing hydros...
The three-pore model of peritoneal fluid transport predicts that once the osmotic gradient has dissi...
Using the Sprague-Dawley female rat, a systems-level research proram was carried out to investigate ...
water reabsorption from the peritoneal cavity into the surrounding tissue substantially decreases th...
The partitioning of fluid flows among small and ultrasmall pores of the three-pore model in peritone...
This paper deals with the peritoneal microcirculation and with peritoneal exchange occurring in peri...
The partitioning of fluid flows among small and ultrasmall pores of the three-pore model in peritone...
Simulations of peritoneal solute transport during CAPD. Application of two-pore formalism. Blood per...
Hydraulically-induced convective solute transport across the rabbit peritoneum. Transport of solutes...
The contribution of free water transport and small pore transport to the total fluid removal in peri...
Measuring transport of water across the peritoneal membrane.IntroductionMechanisms of water flow acr...
The transport of macromolecules during peritoneal dialysis is highly selective when they move from b...
osmosis; pathophysiology; peritoneal dialysis Mathematical prediction of clinical events versus phys...
Water transport model during CAPD: Determination of parameters. To minimize the total amount of gluc...
Effect of an increased intraperitoneal pressure on fluid and solute transport during CAPD. The effec...
The relationship between epithelial fluid transport, standing osmotic gradients, and standing hydros...