PubMed Health⌕ Search

Biomedical subjects

R Germann

Publications and source records attributed to R Germann.

At least 37 records · Page 2Linked to original sources

Sodium-taurocholate-induced acute necrotizing pancreatitis does not affect jejunal oxygenation in pigs.

OBJECTIVE: To study the influence of experimentally induced acute necrotizing pancreatitis on jejunal oxygen transport, jejunal oxygen consumption, and mucosal PO2. DESIGN: Prospective, randomized trial. SETTING: Animal laboratory. SUBJECTS: Domestic pigs aged 7 to 8 wks. INTERVENTIONS: Two groups of pigs were anesthetized with midazolam and sufentanyl, mechanically ventilated, and hemodynamically monitored. In controls (n = 9) and in animals with acute necrotizing pancreatitis (n = 9), a segment of the jejunum was isolated and autoperfused in situ. Through an antimesenteric enterotomy, an area of jejunal mucosa was exposed for mucosal PO2 measurements. Acute necrotizing pancreatitis was induced by the injection of 10 mL of 10% sodium-taurocholate into the main pancreatic duct. Both groups received normal saline solution to keep pulmonary artery occlusion pressure constant. MEASUREMENTS: Mucosal PO2 was assessed with a modified Clark-type multiwire surface electrode. After two baseline measurements, systemic and regional oxygen transport variables and mucosal PO2 were determined at designated intervals (20, 40, 60, 100, 120, 160, 200, 240, 280 mins). MAIN RESULTS: Systemic hemodynamics and oxygen transport were maintained in both groups. In contrast to controls, all animals with pancreatitis showed gross macroscopic and histologic evidence of severe acute necrotizing pancreatitis at autopsy. There were no significant differences between groups in jejunal blood flow, oxygen transport, oxygen consumption, oxygen extraction ratio, or mucosal PO2. CONCLUSIONS: Our results demonstrate that, under conditions of sustained systemic hemodynamics, jejunal oxygen transport and mucosal oxygenation are well maintained during the early course of sodium-taurocholate-induced acute necrotizing pancreatitis.

Acute Disease↗

Vasomotion induces regular major oscillations in jejunal mucosal tissue oxygenation.

The mucosa of the small intestine has some unique microcirculatory features that may result in significant tissue oxygenation changes even under physiological conditions. To prove this hypothesis we investigated mucosal and serosal oxygenation in an autoperfused, innervated jejunal segment in pigs. Eight animals (30-40 kg) were anesthetized, paralyzed, and normoventilated. A small segment of the jejunal mucosa and serosa was exposed by a midline laparotomy and an antimesenteric incision. Mucosal and serosal oxygen tensions were measured using Clark-type surface oxygen electrodes. Mucosal hemoglobin saturation and concentration were determined by tissue reflectance spectrophotometry. Systemic hemodynamics, mesenteric-venous acid base, and blood gas variables, as well as systemic acid-base and blood gas variables and jejunal electromyogenic potentials, were recorded. Measurements were performed after a rest period at 0, 30, 60, and 90 min. All animals remained hemodynamically stable. At time 0 the jejunal oxygen extraction ratio was 0.33 +/- 0.05, the mean serosal PO2 was 60.25 +/- 7.69, the mean mucosal PO2 was 25.47 +/- 4.41 mmHg, and the mean mucosal hemoglobin saturation was 46.36 +/- 6.22%. Mean values did not change with time. In contrast to serosal PO2, mucosal PO2, mucosal hemoglobin oxygen saturation, and hemoglobin concentration showed rhythmic oscillations with a frequency of 3.4-5 cycles/min that were unrelated to systemic hemodynamic parameters, respiratory frequency, and intestinal peristalsis. From this we concluded that the jejunal mucosa demonstrates significant, regular changes in oxygenation parameters that are locally mediated. We speculate that the physiological basis for this phenomenon is the countercurrent arrangement of microvessels in conjunction with vasomotion.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Dopamine and mucosal oxygenation in the porcine jejunum.

The effect of intravenously delivered dopamine on jejunal tissue oxygenation was studied in 12 pigs anesthetized with midazolam and sufentanil and mechanically ventilated. A small segment of the jejunal mucosa and serosa was exposed by midline laparotomy and antimesenteric incision. Mucosal and serosal tissue PO2, mucosal microvascular hemoglobin oxygen saturation, and mucosal hemoglobin concentration were measured by means of Clark-type oxygen electrodes and tissue reflectance spectrophotometry, respectively. In five animals electromyogenic potentials of the jejunal wall were recorded. Measurements were performed under baseline conditions and after intravenous infusion of 2, 4, 8, 16, 32, and again 2 micrograms.kg-1.min-1 of dopamine. The drug produced a dose-related increase in mucosal PO2 (from 26.5 Torr at baseline to 49 Torr at 32 micrograms of dopamine; P < 0.001) and mucosal hemoglobin oxygen saturation (from 55.1 to 70.1%; P < 0.03) but no change in serosal PO2 (from 70.6 to 65.5 Torr). In nine animals baseline mucosal PO2 and mucosal hemoglobin oxygen saturation showed rhythmic oscillations with a frequency of 2.5-5 cycles/min that could not be related to electromyogenic potentials. Dopamine decreased the oscillation amplitude of these two parameters (P < 0.001), and at doses > 16 micrograms.kg-1.min-1 they were no longer present. Dopamine therefore improves mucosal oxygenation of the porcine jejunum in a selective and dose-related manner. At higher doses the preexisting oscillatory pattern of mucosal oxygenation, which is most likely due to vasomotion, is impeded.

Animals↗

Factors influencing transcutaneous oxygen and carbon dioxide measurements in adult intensive care patients.

Transcutaneous PO2 (PtcO2) is suggested to reflect tissue oxygenation in intensive care patients, whereas transcutaneous PCO2 (PtcCO2) is advocated as a noninvasive method for assessing PaCO2. In 24 critically ill adult patients (mean Apache II score 14.2, SD 4.7) we investigated the impact of variables that are commonly thought to determine PtcO2 and PtcCO2 measurements. A linear correlation was found between PtcO2 and PaO2 (r = 0.6; p less than or equal to 0.0001) and between PtcO2 and mean arterial blood pressure (MAP; r = 0.42; p less than or equal to 0.003). Cardiac index (CI) correlated with tc-index (PtcO2/PaO2; r = 0.31; p less than or equal to 0.03). There was no relationship between PtcO2 and hemoglobin concentration (Hb) and the position of the oxygen dissociation curve (ODC). Stepwise multiple regression analysis demonstrated a significant influence of PaO2 and MAP on PtcO2. The contribution of CI, Hb and the ODC was not significant. Only 40% of the variability of a single PtcO2 measurement could be explained by PaO2 and MAP. A significant linear correlation was demonstrated between PtcCO2 and PaCO2 (r = 0.76; p less than or equal to 0.0001) but not between PtcCO2 and CI, MAP and arterial base excess (BEa). Stepwise multiple regression analysis revealed an influence of PaCO2 and of CI on PtcCO2; 66% of the variability of a single PtcCO2-value could be explained by PaCO2 and CI. Our data demonstrate that transcutaneous derived gas tensions result from complex interaction between hemodynamic, respiratory and local factors, which can hardly be defined in ICU-patients.

Adult↗

[Manual suture versus/or mechanical suture from the Austrian viewpoint].

A general inquiry was made at surgical units and university clinics in Austria about the anastomosis techniques used between 1980 to 1985. The result was that in 90.3% the suture was made by hand and in 9.7% by machine. The first mentioned was performed as double row inverting suture by 66% of our surgeons, and only in 30% as an all-layer suture. The stapler-technique was mostly preferred for the oesophago-jejunostomy and the high and lower resection of the rectum. A leakage of the suture line was observed in 3.9% after sewing by hand and in 6.3% after stapling. The total lethality finally was 1.4% for hand made suture and 1.8% for apparative suture.

Austria↗