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Biomedical subjects

G Rasmanis

Publications and source records attributed to G Rasmanis.

At least 19 recordsLinked to original sources

Acoustics and psychosocial environment in intensive coronary care.

BACKGROUND: Stress, strain, and fatigue at the workplace have previously not been studied in relation to acoustic conditions. AIMS: To examine the influence of different acoustic conditions on the work environment and the staff in a coronary critical care unit (CCU). METHOD: Psychosocial work environment data from start and end of each individual shift were obtained from three shifts (morning, afternoon, and night) for a one-week baseline period and for two four-week periods during which either sound reflecting or sound absorbing tiles were installed. RESULTS: Reverberation times and speech intelligibility improved during the study period when the ceiling tiles were changed from sound reflecting tiles to sound absorbing ones of identical appearance. Improved acoustics positively affected the work environment; the afternoon shift staff experienced significantly lower work demands and reported less pressure and strain. CONCLUSIONS: Important gains in the psychosocial work environment of healthcare can be achieved by improving room acoustics. The study points to the importance of further research on possible effects of acoustics in healthcare on staff turnover, quality of patient care, and medical errors.

Acoustics↗

The Na(+)/H(+) exchange inhibitor eniporide as an adjunct to early reperfusion therapy for acute myocardial infarction. Results of the evaluation of the safety and cardioprotective effects of eniporide in acute myocardial infarction (ESCAMI) trial.

OBJECTIVES: We conducted an international, prospective, randomized, double-blind, placebo-controlled phase 2 trial in patients undergoing thrombolytic therapy or primary angioplasty for acute ST-elevation myocardial infarction (MI) to investigate the effect of eniporide on infarct size and clinical outcome. BACKGROUND: Experimental studies suggest that the activity of the Na(+)/H(+) exchange (NHE) plays an important role in the unfavorable sequels of myocardial ischemia and reperfusion. Eniporide specifically inhibits the NHE-1 isoform and has been shown to limit infarct size in experimental models. METHODS: The primary efficacy end point was the infarct size measured by the cumulative release of alpha-hydroxybutyrate dehydrogenase (alpha-HDBH) (area under the curve [AUC] 0 to 72 h). In stage 1, 50, 100, 150 or 200 mg eniporide given as a 10-min infusion before start of reperfusion therapy were compared with placebo in 430 patients, and in stage 2, 100 and 150 mg eniporide were compared with placebo in 959 patients. RESULTS: In stage 1, the administration of 100 mg and 150 mg eniporide resulted in smaller infarct sizes (mean alpha-HBDH AUC in U/ml x h, placebo: 44.2, 100 mg eniporide: 40.2, 150 mg eniporide: 33.9), especially in the angioplasty group. In contrast, in stage 2 there was no difference in the enzymatic infarct size between the three groups (placebo: 41.2, 100 mg eniporide: 43.0, 150 mg eniporide: 41.5). Overall there was no effect of eniporide on clinical outcome (death, cardiogenic shock, heart failure, life-threatening arrhythmias). However, there was a significant reduction of the incidence of heart failure in patients reperfused late (>4 h). CONCLUSIONS: In this large study administration of the NHE-1 inhibitor eniporide, before reperfusion therapy in patients with acute ST elevation MI, did not limit infarct size or improve clinical outcome.

Adult↗

Evaluation of a point-of-care system for quantitative determination of troponin T and myoglobin.

We present the results of a multicenter evaluation of a new point-of-care system (Cardiac Reader) for the quantitative determination of cardiac troponin T (CARDIAC T Quantitative test) and myoglobin (CARDIAC M test) in whole blood samples. The Cardiac Reader is a CCD camera that optically reads the immunochemical test strips. The measuring range is 0.1 to 3 microg/l for CARDIAC T Quantitative and 30 to 700 microg/l for CARDIAC M. Both tests are calibrated by the manufacturer. The reaction times of the tests are 12 or 8 minutes, respectively. Method comparisons were performed with 281 heparinized blood samples from patients with suspected acute coronary syndromes. The results obtained with CARDIAC T Quantitative showed a good agreement compared with cardiac troponin T ELISA (r = 0.89; y = 0.93x + 0.02). The method comparison between CARDIAC M and Tina-quant Myoglobin also showed a good agreement between both assays (r = 0.98; y = 0.92x + 1.6). Test lot-to-lot comparisons yielded differences of 2% and 6% for CARDIAC T Quantitative and of 0 to 11% for CARDIAC M. The within-run imprecision with blood samples and control materials was acceptable for CARDIAC T Quantitative (CV 10 to 15%) and good for CARDIAC M (CV 5 to 10%). The between-instrument CV was below 7% for CARDIACT Quantitative and below 5% for CARDIAC M. The cross-reactivity of CARDIAC T Quantitative with skeletal troponin T was approximately 0.003%. No significant analytical interference was detected for any of the assays in investigations with biotin (up to 100 microg/l), hemoglobin (up to 0.125 mmol/l), hematocrit (26 to 52%), bilirubin (up to 340 micromol/l), triglycerides (up to 5.0 mmol/l), and 18 standard drugs. With the Cardiac Reader reliable quantitative results can be easily obtained for both cardiac markers. The system is, therefore, particularly suitable for use in emergency rooms, coronary care units and small hospitals.

Coronary Disease↗

Analytical and clinical performance of an improved qualitative troponin T rapid test in laboratories and critical care units.

OBJECTIVE: To evaluate the performance of a visual troponin T rapid test in the hands of nontraditionally trained personnel of 2 critical care units in comparison to 3 laboratories. METHODS: Method comparisons of the troponin T rapid test versus cardiac troponin T enzyme-linked immunosorbent assay were performed with 804 samples from 510 patients with suspected acute coronary syndromes. Cross-reactivity with skeletal troponin T was studied up to 5000 microg/L. RESULTS: Laboratories and critical care units obtained comparable results in the analytical cutoff of the test (0.11 and 0. 10 microg/L) and in the diagnostic sensitivities in the detection of acute myocardial infarction (96% and 93% after 8 hours) and of high-risk patients with unstable angina pectoris (100% and 100%). Different percentages of false-positive results (0.2% and 3%) were found, which may reflect different objectives and strategies in these hospital units. The cross-reactivity with skeletal troponin T was less than 0.01%. CONCLUSIONS: The troponin T rapid test gives reliable results not only when used by laboratory personnel experienced in the execution of analytical methods, but also in the hands of nurses and physicians working in clinical units outside the laboratory.

Angina, Unstable↗

Excellent reliability of nurse-based bedside diagnosis of acute myocardial infarction by rapid dry-strip creatine kinase MB, myoglobin, and troponin T.

With the aim to compare the diagnostic efficacy as regards acute myocardial infarction of two rapid dry-strip tests, one with both creatine kinase MB (CK-MB) and myoglobin (C + M) and the other with troponin T, and to test the reliability of bedside diagnosis by the coronary care unit (CCU) nurse, 151 patients with acute chest pain admitted to the CCU were investigated. There was no difference in diagnostic performance between rapid tests and quantitative determinations. With <6-hour duration of symptoms, the sensitivity was better for C + M than for troponin T (72% vs 33%, p < 0.05). With symptoms lasting >12 hours on arrival, troponin T performed better, with 100% sensitivity and a negative predictive value of 100% in the 6-hour retest. For exclusion of damage, the two tests have similar and reliable diagnostic capacities 12 hours after the onset of symptoms. The bedside diagnosis or exclusion of acute myocardial infarction was carried out rapidly (within 20 minutes) and reliably by the CCU nurses.

Adult↗

An improved rapid troponin T test with a decreased detection limit: a multicentre study of the analytical and clinical performance in suspected myocardial damage.

In a multicentre study, we evaluated the analytical and diagnostic performance of the second version of the TROPT rapid test (TROPT 2, CARDIACT in the US). We tested TROPT 2 on 796 blood samples from 487 patients admitted on suspicion of myocardial infarction between 1 and 72 h after onset of symptoms and determined cTnT ELISA and CK MB mass in the corresponding serum samples. Frequency distributions of the results with TROPT 2 showed a detection limit of 0.18 microgram/l (for 50% positive results) as determined by the quantitative cTnT ELISA method. In a total of 796 samples the sensitivities in the detection of myocardial infarction (WHO criteria) 8-12 h after onset of symptoms were highest for cTnT ELISA (98%), followed by the rapid assay and CK MB mass (92%). A subgroup of 87 patients was primarily classified by the WHO criteria for definite infarction. Based on the maximum values within each patient time-series, diagnostic sensitivities for infarction were 100% for TROPT2, cTnT ELISA and CK MB mass. The corresponding specificities were 90%, 82% and 100%, respectively. After reclassification summarizing all cases of myocardial damage (acute and subacute myocardial infarctions and minor myocardial damage) the sensitivities were 87% (TROPT2), 100% (cTnT ELISA) and 71% (CK MB mass). The specificities of all three markers were 100%. Over 50% of all cases of minor myocardial damage were detected by TROPT 2. The clinical evaluation showed that the diagnostic performance of TROPT 2 is only slightly lower than that of cTnT ELISA.

Angina, Unstable↗

Implications of the prognostic importance of exercise-induced thromboxane formation in survivors of an acute myocardial infarction.

Thirty-two patients with acute myocardial infarction performed an exercise stress test one month after hospital discharge. The in vivo formation of thromboxane and prostacyclin formation before and during the exercise stress test was analyzed with gas chromatography-mass spectrometry of the in vivo formed metabolites 2,3-dinor-TxB2 and 2,3-dinor-6-keto-PGF1 alpha. Patients with a significant increase in thromboxane formation (> 30%) during exercise (P < 0.0001) had a worse prognosis, with a 60% incidence of coronary events during the three years following the index infarction as compared to only 8% in the group without such an increase in thromboxane formation during exercise (P = 0.008). The group with coronary events and increased thromboxane formation included patients not detected by classical risk factors. Our findings suggest that exercise-induced thromboxane formation in survivors of an acute myocardial infarction may include prognostic information not defined by other risk indicators.

6-Ketoprostaglandin F1 alpha↗

Evidence of increased platelet activation after thrombolysis in patients with acute myocardial infarction.

OBJECTIVE: To assess platelet activation after thrombolysis in patients with acute myocardial infarction. DESIGN: Platelet function was assessed by measurement of the in vivo synthesis of thromboxane by gas chromatography-mass spectrometry of thromboxane's major urinary metabolite, 2,3-dinor-thromboxane-B2. SETTING: Coronary care unit of Huddinge University Hospital. SUBJECTS: 30 patients with acute myocardial infarction given either streptokinase 1.5 million units intravenously over one hour + 500 mg aspirin (n = 10), 500 mg aspirin (n = 10), or neither thrombolysis nor aspirin (n = 10). RESULTS: Patients treated by thrombolysis had a 20-fold increase in thromboxane formation during thrombolysis compared with control patients not treated by thrombolysis (p = 0.0001). Until two days after thrombolysis thromboxane production in patients treated with streptokinase did not decrease to a value comparable with patients treated with aspirin but not given thrombolysis. CONCLUSION: Thromboxane production increased considerably during thrombolysis, possibly reflecting greatly enhanced platelet activation. The slow decrease in thromboxane formation after treatment with aspirin suggests that the efficacy of thrombolysis might be improved by more efficient antiplatelet treatment.

Adult↗

Prostacyclin production in myocardial infarction in the acute phase and during follow-up.

Twenty-five patients with myocardial infarction were monitored in the acute phase and during follow-up with regard to the in vivo production of prostacyclin (PGI2) and thromboxane (TxA2), by measurement of their major urinary metabolites, 2,3-dinor-6-keto-PGF1 alpha and 2,3-dinor-TxB2, respectively. In 22 of these patients PGI2 and TxA2 production were also assessed before, during and after an exercise test performed 6 weeks after discharge. In approximately 24% of patients the in vivo production of prostacyclin did not increase during the acute phase of the infarction process. This inability was usually associated with a decrease in the release of heart muscle enzymes, and was mostly frequently observed in women. During the exercise tolerance test, none of the patients showed any increase in prostacyclin production, in contrast to healthy volunteers, in whom a significant increase was seen. There were no differences between patients with and without an increase in prostacyclin production during the acute phase. At the follow-up 2 years after the myocardial infarction, eight cardiac events had occurred, all of which were noted among patients who exhibited an expected increase in prostacyclin production in association with the infarction. This would seem reasonable, since most of the patients in this group had larger primary infarctions.

6-Ketoprostaglandin F1 alpha↗

Thromboxane synthase inhibition: "endoperoxide shunt phenomenon" does not occur in healthy humans in vivo.

The effects of the thromboxane synthase inhibitor CGS13080 on the in vivo synthesis of thromboxane and prostacyclin were determined in six healthy volunteers. Two different doses (0.08 and 0.25 mg/kg x h) were infused for six hours under strictly controlled conditions and 2,3-dinor-TxB2 and 2,3-dinor-6-keto-PGF1 alpha were measured in urine using gaschromatography--mass spectrometry. The in vivo synthesis of thromboxane was inhibited by 80-75% while there was no effect on the in vivo prostacyclin synthesis.

6-Ketoprostaglandin F1 alpha↗

In vivo biosynthesis of thromboxane and prostacyclin during exposure to physiological levels of epinephrine.

The effects of 20-min epinephrine infusion (0.025 and 0.3 nmol/kg/min) on the in vivo synthesis of thromboxane A2 and prostacyclin were studied in ten healthy male volunteers. We assessed the in vivo biosynthesis of thromboxane A2 and prostacyclin by measurement of the urinary metabolites 2,3-dinor-TxB2 and 2,3-dinor-6-keto-PGF1 alpha, respectively. Epinephrine infusion did not cause any significant changes in the urinary excretion of the two metabolites. Thus, we conclude that physiological levels of epinephrine do not affect the in vivo biosynthesis of thromboxane A2 and prostacyclin.

Adult↗

Effects of intermittent treatment with aspirin on thromboxane and prostacyclin formation in patients with acute myocardial infarction.

Thromboxane and prostacyclin formation were monitored in twenty patients with acute myocardial infarction. Ten received 500 mg acetylsalicylic acid (ASA) orally starting 12 h after admission and then intermittently every third day for one month; the other ten did not receive ASA or any other drug known to interfere with the synthesis of prostanoids. In the ASA group thromboxane formation, initially raised, fell rapidly and remained low. In the control group thromboxane formation decreased very slowly and was not normal by the end of the study period. Prostacyclin formation seemed identical in the two groups. Thus intermittent ASA, in this dosage, efficiently inhibited the enhanced thromboxane formation in acute myocardial infarction without interfering with prostacyclin formation.

Administration, Oral↗