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Microvascular Research|November 1, 1987
Model analysis of the enhancement of tissue oxygenation by hemodilution due to increased microvascular flow velocityS Mirhashemi, S Ertefai, K Messmer, et al.
Computerized Medical Imaging and Graphics : the Official Journal of the Computerized Medical Imaging Society|January 1, 1990
Pseudocolor display of regional organ blood flow determined by means of the radioactive microsphere techniqueW Gross, P Zeller, U Kreimeier, et al.
Langenbeck'S Archives of Surgery|June 17, 1998
Failure of Kupffer cell blockade to prevent disseminated intravascular coagulation in endotoxemic rats despite improved survivalD Rüttinger, B Vollmar, B Kempter, et al.
Basic Research in Cardiology|September 1, 1990
Open chest and open pericardium affect the distribution of myocardial blood flow in the right ventricleR Schosser, H Forst, J Racenberg, et al.
The American Journal of Physiology|June 11, 1999
Effect of diaspirin cross-linked hemoglobin on normal and postischemic microcirculation of the rat pancreasE von Dobschuetz, T Hoffmann, C Engelschalk, et al.
The American Journal of Physiology|May 18, 1999
A new sample-processing unit for the fluorescent microsphere methodS Raab, E Thein, A G Harris, et al.
Circulatory Shock|December 1, 1993
Dextran vs. hydroxyethylstarch in inhibition of postischemic leukocyte adherence in striated muscleM D Menger, C Thierjung, F Hammersen, et al.
FEBS Letters|November 21, 1994
p53 expression in nitric oxide-induced apoptosisU K Messmer, M Ankarcrona, P Nicotera, et al.
The American Journal of Physiology|May 1, 1994
Hypertonic hydroxyethyl starch restores hepatic microvascular perfusion in hemorrhagic shockB Vollmar, G Lang, M D Menger, et al.
Infusionstherapie Und Transfusionsmedizin|August 1, 1993
Organ blood supply and tissue oxygenation after limited normovolemic hemodilution with 3% versus 6% Dextran-60U B Brückner, F Kefalianakis, H Krieter, et al.
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