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R Korell

Publications and source records attributed to R Korell.

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Hypertonic saline in stabilized hyperdynamic sepsis.

Hypertonic saline with or without colloidal solution has been successfully used for treating hemorrhagic shock in animal experiments and clinical studies. Due to its various effects at systemic, organ, and microcirculatory levels, the substance appears to be a promising candidate for improving tissue oxygenation in sepsis. We therefore investigated the hypothesis that infusion of hypertonic saline would further improve O2 delivery, O2 extraction, and O2 uptake in hyperdynamic septic shock patients already stabilized by adequate volume and catecholamine infusion. Twenty-one patients received 2-4 mL/kg body weight of hypertonic saline in hydroxyethyl starch within 15 min. This hypertonic saline infusion caused a rapid significant increase in O2 delivery by 14% but only a marginal increase in O2 consumption (7% by cardiovascular Fick [p < .05], 4% by respiratory gases [n.s.]). Hypertonic saline increased the already elevated cardiac output by 24%. The pulmonary capillary wedge pressure increased from 14 +/- 3 to 23 +/ 3 mmHg and pulmonary shunt fraction increased 15%, but arterial PO2 did not fall. Except for the increase in pulmonary capillary wedge pressure, none of the cardiovascular changes lasted longer than 60 min. Plasma sodium levels increased from 138 +/- 25 to 163 +/- 38 mmol/L and normalized within 24 h. In these hyperdynamic septic patients, hypertonic saline infusion produced a transient increase in circulation, but no evidence of a substantial increase in O2 consumption. Either there was no significant O2 debt due to the already elevated O2 delivery levels at baseline (700 mL/min/m2) or the global O2 measurements we used were not able to detect discrete regional hypoxia.

Adult↗

[Hypertonic solutions in the intensive care unit].

The use of small volumes of hypertonic saline (HTS) 7.2-7.5% (small volume resuscitation) in combination with colloidal solutions has been proved to be of value in stabilizing oxygen transport in hemorrhagic shock. The specific effects of HTS lead to an improvement in tissue oxygenation by increasing the cardiac preload, decreasing the afterload and endothelial and interstitial edema within the microcirculation. This study investigates whether the use of HTS combined with hydroxyethylstarch (HAES) leads to a significant increase in the O2 delivery (DO2) and O2 consumption (VO2) in hyperdynamic critically ill patients. A total of 41 patients, 20 septic patients and 21 patients without sepsis were investigated. When a hyperdynamic circulation (DO2 > 700 ml/min/m2) was attained, 2-4 ml/kg 7.5% HTS in 6% HAES were infused over 15 minutes. In the septic patients this leads to a significant increase in the DO2 of 14% (p < 0.001). The VO2 (calculated from the cardiovascular Fick) increased by 7% (p < 0.05). The VO2 calculated from the respiratory gases increased by 4% (n.s.). This < 10% increase in VO2 does not seem to be due to a relevant tissue oxygen debt. This is supported by the fact that in the non septic group the DO2 and VO2 increased by the same extent, there was no significant difference between the two groups. Further there was an equal increase in the O2 extraction ratio of 10% (septic patients) and 9.5% (non septic patients). In both groups the mean plasma lactate levels before and 90 min after the HTS/HAES infusion were within normal range so that a wash-out phenomenon was not discernible.(ABSTRACT TRUNCATED AT 250 WORDS)

Critical Care↗