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W Lingnau

Publications and source records attributed to W Lingnau.

At least 19 recordsLinked to original sources

[Responsibility of the anaesthesiologist in the preoperative risk evaluation].

Correct indications are essential to perform surgical procedures. However, appropriate timing to achieve minimal rates of complications even in high-risk patients or major surgery is at the top of the priority list. Perioperative responsibility is divided between anaesthesiologists and surgeons. While the surgeon is accountable for the surgical procedure, the anaesthesiologist is responsible for preoperative risk evaluation, perioperative management, and maintenance of vital organ functions. Both of these medical specialities must weigh the urgency of the procedure against patient-associated risk factors. Goals are optimal patient safety, efficient preoperative evaluation and subsequent optimisation to reduce the burden for the health care systems. For most patients without underlying diseases, a thorough history and physical examination is sufficient. In teaching hospitals, some laboratory results for screening of organ function are advisable. Patients can be stratified on clinical grounds into low-, medium-, and high-risk categories. Use of these categories, along with consideration of the type and urgency of surgery, allows for a reasonable approach to preoperative testing. Testing directed towards assessment of organ system functional reserve and identification of organs at risk rather than the diagnosis of a specific disease, is the primary goal of preoperative evaluation prior to surgery. These results are essential to prepare an effective anaesthetic plan. Along with increased patient comfort, the number of preoperative hospital days can be reduced by outpatient preoperative evaluation clinics.

Anesthesia↗

The axillocoronary bypass. Blood flow and short-term graft histology in a porcine model.

BACKGROUND: Bypass grafts arising from the axillary artery may be indicated for complications during minimally invasive direct coronary artery bypass grafting, for redo operations and for management of a severely atherosclerotic ascending aorta. As basic data research on this technique is scanty, we investigated intraoperative function and postoperative morphology of axillocoronary bypass grafts in a porcine model. METHODS: Thirteen German domestic pigs received an axillocoronary vein graft (Group I, n=7) or an aortocoronary vein graft (Group II, n=6) to the left anterior descending artery. In Group I the proximal anastomosis was performed to the left axillary artery, and after partial rib resection the graft was brought transpleurally to the target vessel. In both groups the coronary anastomosis was carried out on the beating heart without cardiopulmonary bypass. Graft flow was measured using transit time ultrasonic flow probes. RESULTS: Intraoperatively all grafts showed a typical diastolic flow profile. Stable graft flow was lower in axillocoronary bypass grafts: 47 (30-60 mL/min) in Group I and 65 (35-126 mL/min) in Group II (p=0.005). Flow given as percentage of cardiac output, however, did not differ between the two grafts: 0.9 (0.6-1.2%) in Group I and 1.2 (0.8-2.4%) in Group II (p=NS). At day 4 after surgery there was no clear histologic predilection site for microtrauma and early degenerative changes in the axillocoronary graft. CONCLUSIONS: Axillocoronary bypass flow compares well with flow in the aortocoronary graft. Microtrauma after implantation and early degenerative changes in the axillocoronary vein bypass are not particularly impacted by the thoracic entry site.

Anastomosis, Surgical↗

Inhibition of nitric oxide improves coronary perfusion pressure and return of spontaneous circulation in a porcine cardiopulmonary resuscitation model.

OBJECTIVE: During spontaneous circulation, nonspecific inhibition of nitric oxide synthase by N(G)-nitro-L-arginine methyl ester (L-NAME) increases systemic vascular resistance and, therefore, mean arterial pressure. If this effect can be extrapolated to cardiopulmonary resuscitation (CPR), administering L-NAME during CPR may be beneficial by maintaining or even improving coronary perfusion pressure, and hence successful defibrillation. DESIGN: Prospective, randomized laboratory investigation using an established porcine model with instrumentation for hemodynamic variables, blood gases, and defibrillation attempt. SETTING: University medical center experimental laboratory. SUBJECTS: Ten domestic pigs. INTERVENTIONS: After 4 mins of ventricular fibrillation, ten animals were randomly assigned to receive L-NAME (25 mg/kg; n = 5) or saline placebo (n = 5) (given in two doses) after 3 and 13 mins of CPR, respectively. Defibrillation was provided 5 mins after the second dose of active drug or placebo. MEASUREMENTS AND MAIN RESULTS: Mean +/- sem coronary perfusion pressure was significantly (p < .05) higher 90 secs (27 +/- 3 vs. 17 +/- 3 mm Hg), 10 mins (28 +/- 3 vs. 14 +/- 2 mm Hg), and 15 mins (21 +/- 5 vs. 7 +/- 3 mm Hg) after the first L-NAME administration compared with saline placebo. Mean +/- sem coronary perfusion pressure remained significantly higher 90 secs and 5 mins after the second L-NAME vs. saline placebo administration (19 +/- 4 vs. 6 +/- 4 mm Hg, and 17 +/- 3 vs. 4 +/- 4 mm Hg). After 22 mins of cardiac arrest, including 18 mins of CPR, four of five pigs in the L-NAME group were successfully defibrillated, and survived the 60-min postresuscitation phase. In the placebo group, none of five pigs could be defibrillated successfully (p < .05). CONCLUSIONS: Nonspecific blockade of nitric oxide synthase with L-NAME during CPR was associated with an increase in coronary perfusion pressure and resulted in significantly better initial resuscitation when compared with saline placebo.

Animals↗

Survival with full neurologic recovery and no cerebral pathology after prolonged cardiopulmonary resuscitation with vasopressin in pigs.

OBJECTIVES: We sought to determine the effects of vasopressin and saline placebo in comparison with epinephrine on neurologic recovery and possible cerebral pathology in an established porcine model of prolonged cardiopulmonary resuscitation (CPR). BACKGROUND: It is unknown whether increased cerebral blood flow during CPR with vasopressin is beneficial with regard to neurologic recovery or detrimental owing to complications such as cerebral edema after return of spontaneous circulation. METHODS: After 4 min of cardiac arrest, followed by 3 min of basic life support CPR, 17 animals were randomly assigned to receive every 5 min either vasopressin (0.4, 0.4 and 0.8 U/kg; n = 6), epinephrine (45, 45 and 200 microg/kg; n = 6) or saline placebo (n = 5). The mean value +/- SEM of aortic diastolic pressure was significantly (p < 0.05) higher 90 s after each of three vasopressin versus epinephrine versus saline placebo injections (60 +/- 3 vs. 45 +/- 3 vs. 29 +/- 2 mm Hg; 49 +/- 5 vs. 27 +/- 3 vs. 23 +/- 1 mm Hg; and 50 +/- 6 vs. 21 +/- 3 vs. 16 +/- 3 mm Hg, respectively). After 22 min of cardiac arrest, including 18 min of CPR, defibrillation was attempted to achieve return of spontaneous circulation. RESULTS: All the pigs that received epinephrine and saline placebo died, whereas all pigs on vasopressin survived (p < 0.05). Neurologic evaluation 24 h after successful resuscitation revealed only an unsteady gait in all vasopressin-treated animals; after 96 h, magnetic resonance imaging revealed no cerebral pathology. CONCLUSIONS: During prolonged CPR, repeated vasopressin administration, but not epinephrine or saline placebo, ensured long-term survival with full neurologic recovery and no cerebral pathology in this porcine CPR model.

Animals↗

Effects of vasopressin and epinephrine on splanchnic blood flow and renal function during and after cardiopulmonary resuscitation in pigs.

OBJECTIVE: To compare the effects of vasopressin versus epinephrine on splanchnic blood flow during and after cardiopulmonary resuscitation (CPR), and to evaluate the effects of these vasopressors on renal function in the postresuscitation phase. DESIGN: Prospective, randomized laboratory investigation using an established porcine CPR model with instrumentation for continuous measurement of splanchnic and renal blood flow. SETTING: University hospital experimental laboratory. SUBJECTS: A total of 12 anesthetized, 12- to 16-wk-old domestic pigs weighing 30-35 kg. INTERVENTIONS: After 4 mins of cardiac arrest, and 3 mins of CPR, 12 pigs were randomly assigned to receive either 0.4 units/kg vasopressin (n = 6) or 45 microg/kg epinephrine (n = 6). Defibrillation was performed 5 mins after drug administration; all animals were observed for 6 hrs after return of spontaneous circulation (ROSC). MEASUREMENTS AND MAIN RESULTS: Mean +/- SEM superior mesenteric artery blood flow was significantly (p < .05) lower after vasopressin compared with epinephrine at 90 secs after drug administration (13+/-3 vs. 129+/-33 mL/min); at 5 mins after drug administration (31+/-18 vs. 155+/-39 mL/min); at 5 mins after ROSC (332+/-47 vs. 1087+/-166 mL/min); and at 15 mins after ROSC (450+/-106 vs. 1130+/-222 mL/min); respectively. Mean +/- SEM left renal and hepatic artery blood flow after ROSC was comparable in both groups ranging between 120-290 mL/min (renal blood flow), and 150-360 mL/min (hepatic blood flow), respectively. Median urine output after ROSC showed no difference between groups, and highest values (180-220 mL/hr) were observed in the first 60 mins after ROSC. Median calculated glomerular filtration rate showed no difference between groups with values ranging between 30 and 80 mL/min in the postresuscitation phase. Calculated fractional sodium excretion and osmolar relationship between urea and plasma indicated no evidence for renal tubular dysfunction. CONCLUSIONS: In the early postresuscitation phase, superior mesenteric blood flow was temporarily impaired by vasopressin in comparison with epinephrine. With respect to renal blood flow and renal function after ROSC, there was no difference between either vasopressor given during CPR. Vasopressin given during CPR did not result in an antidiuretic state in the postresuscitation phase.

Animals↗

Repeated administration of vasopressin but not epinephrine maintains coronary perfusion pressure after early and late administration during prolonged cardiopulmonary resuscitation in pigs.

BACKGROUND: It is unknown whether repeated dosages of vasopressin or epinephrine given early or late during basic life support cardiopulmonary resuscitation (CPR) may be able to increase coronary perfusion pressure above a threshold between 20 and 30 mm Hg that renders defibrillation successful. METHODS AND RESULTS: After 4 minutes of cardiac arrest, followed by 3 minutes of basic life support CPR, 12 animals were randomly assigned to receive, every 5 minutes, either vasopressin (early vasopressin: 0.4, 0.4, and 0.8 U/kg, respectively; n=6) or epinephrine (early epinephrine: 45, 45, and 200 microg/kg, respectively; n=6). Another 12 animals were randomly allocated after 4 minutes of cardiac arrest, followed by 8 minutes of basic life support CPR, to receive, every 5 minutes, either vasopressin (late vasopressin: 0.4 and 0.8 U/kg, respectively; n=6), or epinephrine (late epinephrine: 45 and 200 microg/kg, respectively; n=6). Defibrillation was attempted after 22 minutes of cardiac arrest. Mean+/-SEM coronary perfusion pressure was significantly higher 90 seconds after early vasopressin compared with early epinephrine (50+/-4 versus 34+/-3 mm Hg, P<0.02; 42+/-5 versus 15+/-3 mm Hg, P<0.0008; and 37+/-5 versus 11+/-3 mm Hg, P<0. 002, respectively). Mean+/-SEM coronary perfusion pressure was significantly higher 90 seconds after late vasopressin compared with late epinephrine (40+/-3 versus 22+/-4 mm Hg, P<0.004, and 32+/-4 versus 15+/-4 mm Hg, P<0.01, respectively). All vasopressin animals survived 60 minutes, whereas no epinephrine pig had return of spontaneous circulation (P<0.05). CONCLUSIONS: Repeated administration of vasopressin but only the first epinephrine dose given early and late during basic life support CPR maintained coronary perfusion pressure above the threshold that is needed for successful defibrillation.

Animals↗

Bacterial contamination of needles used for spinal and epidural anaesthesia.

We have investigated prospectively the incidence of bacterial contamination of 114 spinal and 20 epidural needles collected immediately after lumbar puncture of the subarachnoid or epidural space. Bacteriological examination revealed bacterial contamination of 24 (17.9%) of the needles, mainly coagulase-negative staphylococci (21; 15.7%) followed by yeasts (2; 1.5%), enterococcus (1; 0.8%), pneumococcus (1; 0.8%) and micrococcus (1; 0.8%). Our results suggest that even during aseptic puncture for lumbar anaesthesia, there is a significant rate of needle contamination.

Adult↗

Changing bacterial ecology during a five-year period of selective intestinal decontamination.

The development of bacterial resistance during selective decontamination of the digestive tract (SDD) is controversial. We studied effects on bacterial resistance one year before and during a randomized, placebo-controlled trial of SDD in a surgical intensive care unit. We randomized patients within two different topical regimens (PTA, PCA) or placebo, administered four-times daily to both the oropharynx and gastrointestinal tract. All patients received intravenous ciprofloxacin (200 mg b.d.) for four days. Both SDD regimens successfully reduced aerobic Gram-negative intestinal colonization. There was no increase in resistance of Enterobacteriaceae or Pseudomonas aeruginosa. Acinetobacter calcoaceticus developed multi-resistance over one year, but differences between groups were not significant. We detected a shift towards Gram-positive organisms. Oxacillin-resistant Staphylococcus aureus increased in concert with ciprofloxacin resistance, from 17 to 80.7%, and frequencies of resistance were significantly higher in SDD patients (P < 0.001). Resistance of coagulase-negative staphylococci (CNS) to oxacillin increased initially (25 to 66.9%), but values returned to baseline in controls. Ciprofloxacin resistance in CNS remained higher (P < 0.001) in SDD-treated patients (52.5 vs. 23.3%). The incidence of late respiratory tract infections was unaltered by the prophylactic regimen (SDD 35.2%; Placebo 41.2%; n.s.). We cannot recommend SDD as a prophylactic tool in critically ill patients.

Adult↗

Selective intestinal decontamination in multiple trauma patients: prospective, controlled trial.

BACKGROUND: Reduction of potential pathogens by selective intestinal decontamination has been proposed to improve intensive care. Despite large scientific interest in this method, little is known about its benefit in homogeneous trauma populations. METHODS: In a prospective, controlled study, we enrolled non-infected trauma patients (age over 18 years, mechanical ventilation > or = 48 hours, intensive care for more than 3 days) who primarily were admitted to our university medical center. We randomized patients to be treated with two different topical regimens (polymyxin, tobramycin, and amphotericin (PTA) or polymyxin, ciprofloxin, amphotericin (PCA)) or the carrier only (placebo), administered four times daily both to the oropharynx and to the gastrointestinal tract. All patients received intravenous ciprofloxacin (200 mg, bd) for 4 days. FINDINGS: Of 357 enrolled patients, 310 (age 38.0 +/- 16.5 years, Injury Severity Score 35.2 +/- 12.7) met all inclusion criteria. Selective decontamination successfully reduced intestinal bacterial colonization. However, we did not identify significant differences between groups regarding pneumonia (PTA 47.5%, PCA 39.0%, placebo 45.3%), sepsis (PTA 47.5%, PCA 37.8%, placebo 42.6%), multiple organ failure (PTA 56.3%; PCA 52.4%, placebo 58.1%), and death (PTA 11.3%, PCA 12.2%, placebo 10.8%). Total costs per patient were highest with the PTA regimen. CONCLUSIONS: We found no benefit of selective decontamination in trauma patients. Apparently, bacterial overgrowth in the intestinal tract is not the sole link between trauma, sepsis, and organ failure.

Adult↗

Effects of alpha-trinositol on systemic inflammation and renal function in ovine bacterial sepsis.

Neuronally secreted peptides are important mediators of hemodynamic changes in the systemic inflammatory response. The inositol derivative D-myo-inositol[1,2,6]triphosphate (alpha-trinositol) has been demonstrated to be a specific nonpeptide antagonist of vasoconstriction induced by neuropeptide Y. We induced sepsis by a 48 h continuous infusion of Pseudomonas aeruginosa (10(6) colony-forming unit/min intravenously [i.v.]) in 12 chronically instrumented, conscious sheep. After 24 h, the animals were randomized to receive either alpha-trinositol (i.v. bolus of 2 mg/kg, followed by a continuous infusion of 3.5 mg/kg/h) or the saline carrier. alpha-Trinositol increased the heart rate (108 +/- 4 to 152 +/- 9 beats per minute) and reduced the stroke volume index (65 +/- 5 to 49 +/- 2 mL/beat/m2) but did not change cardiac index. Left ventricular stroke work decreased significantly (80 +/- 9 to 58 +/- 7 g.m/m2). All blood flows except the infrarenal aortic flow were increased after 24 h, but treatment decreased only the flow to the hind limb region. Urine output and fractional sodium excretion significantly increased without osmotic diuretic effects after alpha-trinositol. In treated animals, we found significantly lower leukocyte counts in all organ tissues. We conclude that alpha-trinositol modulates the cardiac performance and the local inflammatory response in tissues, and improves the fluid balance in septic sheep.

Animals↗

Differential effects of prolonged septicemia on isolated pulmonary arteries and veins from sheep.

Isolated third-order pulmonary arteries and veins from sheep were examined for the effects of septicemia on norepinephrine-induced contractions, nitric oxide (NO)-mediated dilation, and basal cyclic GMP levels. The groups studied were as follows: control sheep (n = 7); sheep given live Pseudomonas aeruginosa (Ps, n = 6) for 48 h; and sheep given NG-mono-methyl-L-arginine during the last 24 h of Ps infusion (Ps-L-NMMA, n = 4). The norepinephrine-induced contractions were significantly greater (p < .05) in arteries from septic (Ps and Ps-L-NMMA) sheep. Basal cyclic GMP levels were similar in all of the arteries. The norepinephrine-induced contractions were significantly depressed (p < .05) in veins from septic (Ps and Ps-L-NMMA) sheep. Basal cyclic GMP levels in veins from Ps sheep were markedly elevated (p < .01). N omega-nitro-L-arginine methyl ester (L-NAME) ex vivo decreased cyclic GMP in both arteries and veins. Removal of endothelium enhanced contractions and decreased cyclic GMP in arteries and veins only from control sheep. The results show that septicemia differently affects the pulmonary artery and vein. The enhanced vasoconstriction of the artery is due to decreased endothelium-dependent NO release; the attenuated vasoconstriction of the vein is associated with NO-mediated increased cyclic GMP levels.

ADP Ribose Transferases↗

Changes in regional hemodynamics after nitric oxide inhibition during ovine bacteremia.

We studied the action of nitric oxide synthase (NOS) inhibition on changes in regional blood flow during a continuous infusion of live bacteria. Eighteen ewes were chronically instrumented. After a 7-day recovery period, an infusion of 10(6) colony-forming units/min Pseudomonas aeruginosa was begun. At 24 h, cardiac output increased significantly above baseline in all groups (5.9 +/- 0.4 vs. 8.2 +/- 0.6 l.min 1.m-2), systemic vascular resistance decreased (1,362 +/- 120 vs. 821 +/- 145 dyn.g.cm-5.m-2), and cerebral, cephalic mesenteric, and hindlimb blood flows increased. The animals were then equally and randomly assigned to a bolus of a NOS inhibitor, either 25 mg/kg N omega-nitro-L-arginine methyl ester (L-NAME) or 20 mg/kg N omega-monomethyl-L-arginine (L-NMMA), followed by a continuous infusion of 7 mg.kg-1.min-1 L-NMMA or saline. After NOS inhibition, cardiac index decreased [5.6 +/- 0.1 (L-NAME) and 5.5 +/- 0.4 l.min-1.m-2 (L-NMMA)] and remained significantly decreased for 12 h. 1-NAME decreased carotid and mesenteric blood flows to 64% of the preseptic baseline, and they remained below baseline for 20 h. L-NMMA decreased blood flows only to preseptic baseline values. NOS inhibitors may affect blood flows independently of their hemodynamic effects.

Animals↗

Use of nitric oxide synthase inhibitors in animal models of sepsis.

Sepsis, as a general inflammatory process, affects the whole organism, mainly because of the intense vasodilation and reduced perfusion pressures associated with it. The high mortality rates seen with sepsis are correlated with a reduction in mean arterial pressure. Therefore, the restoration of adequate arterial pressures is imperative. Nitric oxide (NO.) is at least partly responsible for the vasodilation. Inhibition of nitric oxide synthase (NOS) is, therefore, a logical approach for the treatment of sepsis. As with any other vasoconstrictive drug, NOS inhibitors are clinically indicated only in hyperdynamic sepsis. In animal models, their administration leads to an immediate restoration of blood pressure, accompanied by improved myocardial, pulmonary, and renal function. An increase in oxygen extraction prevents oxygen consumption from decreasing, despite a marked reduction in cardiac output to normal concentrations. In sepsis, virtually all regional blood flows are increased. In our experiments, no organ systems showed a reduction below preseptic baseline values when NOS inhibitors were administered. Furthermore, NOS inhibition did not cause an increase in lactate concentrations, indicating adequate nutritive organ blood flow. Consequently, NOS inhibitors seem to be beneficial and safe when administered under the right circumstances and in a controlled fashion.

Amino Acid Oxidoreductases↗

Endotoxin versus bacteremia: a comparison focusing on clinical relevance.

All phenomena seen under ovine endotoxemia or bacteremia are typically observed in septic humans as well. The lethality (approximately 20%) in both sepsis models underlines the severity of the experimental sepsis in these models. As mentioned above, both models are ideal to objectify the effects of new therapeutic approaches for the treatment of sepsis, because they provide stable conditions. We tested the inhibition of nitric oxide synthase in both models: Nitric oxide is the main mediator of the vasodilation and the hyperdynamic circulation seen in sepsis. Since the restoration of the perfusion pressure is the major therapeutic goal to prevent further tissue damage (Chernow et al. 1990), the blockade of the nitric oxide synthase seems to be a logical approach for the treatment of hyperdynamic sepsis. Therefore, we tested the nitric oxide synthase inhibitor N(W)-nitro-L-arginine methyl ester (L-NAME) in the endotoxemic sheep model as well as in the bacteremic model. L-NAME reversed the hyperdynamic circulation of sepsis (Meyer et al.1992; Dehring et al.1993). The cardiac output was lowered back to baseline, and at the same time, the arterial pressure was elevated to baseline niveau, both resulting in a marked increase in systemic vascular resistance (figure 3). The pulmonary artery pressure showed only a slight increase, but due to the marked reduction in cardiac output the pulmonary vascular resistance increased significantly. The oxygen extraction was elevated to an extent, which prevented the oxygen consumption to fall, although the oxygen delivery dropped significantly because of the lowered cardiac output (figure 4). The intrapulmonary shunt was brought back to baseline (Meyer et al.1994a), allowing an improved pulmonary oxygen uptake. The renal function improved significantly after nitric oxide synthase inhibition in endotoxemia as well as in bacteremia (Hinder et al.1994; Lingnau et al.1994). Not only was the creatinine clearance elevated, but the urine output also increased, lowering the positive fluid balance. Another inhibitor of nitric oxide synthase N(W)-Mono-Methyl-L-Arginine (L-NMMA) was recently tested in these models as well. This drug is now already in clinical trials. The fact that the effects of these nitric oxide synthase inhibitors in septic humans are similar to the effects in the described experimental sepsis models proves the clinical relevance of the endotoxemic and the bacterimic sheep model.

Animals↗

[Gas gangrene as a manifestation of endogenous Clostridium septicum infection].

Endogenous, nontraumatic clostridial myonecrosis has a frequent association with colon carcinoma, leukemia, diabetes mellitus, and drug-induced immunosuppression. We present two cases of Clostridium septicum myonecrosis. An 18-year-old girl developed severe abdominal pain on day 7 after hospitalization for cytostatic treatment of acute lymphoblastic leukemia. Blood cultures yielded Clostridium septicum and histopathological exam of muscle tissue showed extended myonecrosis. Eventually the patient recovered with antibiotics and surgical therapy. A 72-year-old diabetic woman was treated as an outpatient with an intramuscular injection of steroidal antiphlogistics for "acute lumbar disc disease". The next morning persistence of hip pain and discoloration of the right thigh caused hospitalization under the suspected diagnosis "fracture of the neck of the femur". Clostridium septicum was cultured from intraoperatively taken swabs. At autopsy, in addition to the gangrene, there was an adenocarcinoma of the cecum, which had not been diagnosed during life.

Adolescent↗

Control of an outbreak of methicillin-resistant Staphylococcus aureus (MRSA) by hygienic measures in a general intensive care unit.

Infections are a major cause of death in critically ill patients. As gram-positive organisms are more widespread and methicillin-resistant staphylococci (MRSA, MRSE) are easily distributed in overcrowded Intensive Care Units (ICU), extended hygienic procedures for infection control are most important. We hypothesize that strict regulations and educational programs for medical and nursing personnel are able to control the spread of resistant bacteria. In a four-room 16-bed medico-surgical ICU, we reinforced hygienic procedures and introduced the separation of clean postoperative and multiply injured patients from those with infectious complications, subsequent to an outbreak of MRSA in 1991. MRSA and MRSE isolated from surveillance cultures of bronchial secretions were reduced from an annual rate of 60.0% to 37.7% and 36.4% to 6.2% respectively between the years 1991 and 1992. Accordingly, the number of lower respiratory tract infections and the crude mortality could be reduced. We conclude that prompt implementation of control measures and continuous education of medical personnel are able to control an outbreak of infection with resistant staphylococci in an ICU setting.

Cause of Death↗

Subglottic positive end-expiratory pressure in extubated patients recovering from acute lung injury.

OBJECTIVE: To examine the glottic function in extubated patients recovering from acute lung injury by simultaneous measurement of airway opening and subglottic airway pressures while patients are breathing at ambient pressure and receiving continuous positive airway pressure by a face mask. DESIGN: Descriptive, prospective study. SETTING: Intensive care unit at a university hospital. PATIENTS: Ten patients who required continuous positive airway pressure of at least 7 cm H2O in order to restore gas exchange after mechanical ventilation for acute lung injury. INTERVENTIONS: Spontaneous breathing at ambient airway pressure and with continuous positive airway pressures of 5 and 10 cm H2O via face mask. MEASUREMENTS AND MAIN RESULTS: Intratracheal pressure, airway opening pressure, and airflow at the airway opening were measured. Breathing at ambient pressure resulted in significantly higher end-expiratory intratracheal pressure than end-expiratory airway opening pressure (p < .01). No significant differences between end-expiratory intratracheal pressure and end-expiratory airway opening pressure were observed during breathing with continuous positive airway pressures of 5 and 10 cm H2O. A significant end-expiratory airflow at the airway opening (p < .01), observed during ambient pressure breathing, was not detectable while the patient received mask continuous positive airway pressure. The partial pressure of oxygen in the arterial blood (Pao2) increased significantly while patients breathed with 10 cm H2O, but not while patients breathed 5 cm H2O continuous positive airway pressure compared with breathing at ambient pressure (p < .05). CONCLUSIONS: Our data imply that patients recovering from acute lung injury create an intratracheal positive end-expiratory pressure by braking the expiratory airflow, probably by glottic narrowing. Despite compensatory glottic narrowing, extubated patients with reduced lung function may benefit from higher levels of continuous positive airway pressure.

Adolescent↗