Background: The chemical inertness of hydroxyethyl starch (HES) might cause interferences of the colloid with a variety of laboratory tests. We aimed to evaluate potential influences of HES 130/0.4, the newest HES type, on several common hematology and clinical chemistry parameters. Methods and results: A convenient sample of 25 patients scheduled for rheological therapy with 500 mL 6% HES 130/0.4 was evaluated. Blood samples were drawn before and after colloid application. Comparing pre- and post-infusion values of a battery of laboratory tests (i.e., hematology and hemostasis parameters, electrolytes, enzymes, kidney and metabolic parameters, lipids, etc.) in time course, a median difference greater than the reference change value for a s...
BACKGROUND: Carboxymethyl starch (CMS) and carboxymethylated hydroxyethyl starch (CM-HES) might offe...
Background. The development of hydroxyethyl starches (HES) with low impact on blood coagulation but ...
BACKGROUND: The development of hydroxyethyl starches (HES) with low impact on blood coagulation but ...
Background: The chemical inertness of hydroxyethyl starch (HES) might cause interferences of the col...
Background: The chemical inertness of hydroxyethyl starch (HES) might cause interferences of the col...
Background: The chemical inertness of hydroxyethyl starch (HES) might cause interferences of the col...
BACKGROUND High-molecular-weight hydroxyethyl starch (HES) compromises blood coagulation more than ...
Background. Development of hydroxyethyl starches (HES) with a low impact on blood coagulation but a ...
UNLABELLED We compared the effects of progressive in vitro hemodilution (30% and 60%) on blood coagu...
BACKGROUND: Hydroxyethyl starches (HES) with lower impact on blood coagulation but longer intravascu...
Résumé Fondement : le développement de solutions d'hydroxy-éthyl-amidons (HEAS) avec peu d'impact su...
Intravenous fluids with synthetic colloids such as hydroxyethyl starch (HES) are known to interfere ...
OBJECTIVE: The aim of this study was to determine the effects of in vitro hemodilution with 6% hydro...
BACKGROUND: The effects of different types of hydroxylethyl starch (HES) on blood coagulation closel...
BACKGROUND: Carboxymethyl starch (CMS) and carboxymethylated hydroxyethyl starch (CM-HES) might offe...
BACKGROUND: Carboxymethyl starch (CMS) and carboxymethylated hydroxyethyl starch (CM-HES) might offe...
Background. The development of hydroxyethyl starches (HES) with low impact on blood coagulation but ...
BACKGROUND: The development of hydroxyethyl starches (HES) with low impact on blood coagulation but ...
Background: The chemical inertness of hydroxyethyl starch (HES) might cause interferences of the col...
Background: The chemical inertness of hydroxyethyl starch (HES) might cause interferences of the col...
Background: The chemical inertness of hydroxyethyl starch (HES) might cause interferences of the col...
BACKGROUND High-molecular-weight hydroxyethyl starch (HES) compromises blood coagulation more than ...
Background. Development of hydroxyethyl starches (HES) with a low impact on blood coagulation but a ...
UNLABELLED We compared the effects of progressive in vitro hemodilution (30% and 60%) on blood coagu...
BACKGROUND: Hydroxyethyl starches (HES) with lower impact on blood coagulation but longer intravascu...
Résumé Fondement : le développement de solutions d'hydroxy-éthyl-amidons (HEAS) avec peu d'impact su...
Intravenous fluids with synthetic colloids such as hydroxyethyl starch (HES) are known to interfere ...
OBJECTIVE: The aim of this study was to determine the effects of in vitro hemodilution with 6% hydro...
BACKGROUND: The effects of different types of hydroxylethyl starch (HES) on blood coagulation closel...
BACKGROUND: Carboxymethyl starch (CMS) and carboxymethylated hydroxyethyl starch (CM-HES) might offe...
BACKGROUND: Carboxymethyl starch (CMS) and carboxymethylated hydroxyethyl starch (CM-HES) might offe...
Background. The development of hydroxyethyl starches (HES) with low impact on blood coagulation but ...
BACKGROUND: The development of hydroxyethyl starches (HES) with low impact on blood coagulation but ...