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C Torp-Pedersen

Publications and source records attributed to C Torp-Pedersen.

At least 55 records · Page 3Linked to original sources

Long-term prognostic importance of hyperkinesia following acute myocardial infarction. TRACE Study Group. TRAndolapril Cardiac Evaluation.

The long-term prognostic importance of hyperkinesia is unknown following an acute myocardial infarction (AMI). The American Society of Echocardiography recommends that hyperkinesia should not be included in calculation of wall motion index (WMI). The objective of the present study was to determine if hyperkinesia should be included in WMI when it is estimated for prognostic purposes following an AMI. Six thousand, six hundred seventy-six consecutive patients were screened 1 to 6 days after AMI in 27 Danish hospitals. WMI was measured in 6,232 patients applying the 9-segment model and the following scoring system: 3 for hyperkinesia, 2 for normokinesia, 1 for hypokinesia, 0 for akinesia, and -1 for dyskinesia. All patients were followed with respect to mortality for at least 3 years. WMI was calculated in 2 different ways: 1 including hyperkinetic segments (hyperkinetic-WMI) and the other excluding nonhyperkinetic segments (nonhyperkinetic-WMI) by converting the hyperkinetic segments to normokinetic segments. Hyperkinesia occurred in 736 patients (11.8%). WMI was an important prognostic factor (relative risk 2.49; p = 0.0001) for long-term mortality together with heart failure, history of hypertension, angina, or diabetes, previous AMI, age, thrombolytic therapy, arrhythmias, and bundle branch block. In a multivariate analysis including nonhyperkinetic-WMI, hyperkinesia was associated with a relative risk of 0.84, which was statistically significant (confidence intervals 0.74 to 0.96; p = 0.01). When hyperkinesia was included, both in WMI (hyperkinetic-WMI) and as an independent variable, no additional prognostic information (relative risk 0.93; p = 0.26) was obtained. An echocardiographic evaluation shortly after an AMI gave important prognostic information, especially if the information concerning hyperkinesia was included. If WMI is used for prognostic purposes, hyperkinesia should be included in calculation of the index.

Adult↗

Effect of the angiotensin-converting enzyme inhibitor trandolapril on mortality and morbidity in diabetic patients with left ventricular dysfunction after acute myocardial infarction. Trace Study Group.

OBJECTIVES: This study evaluated the efficacy of long-term treatment with the angiotensin-converting enzyme (ACE) inhibitor trandolapril in diabetic patients with left ventricular dysfunction after acute myocardial infarction (AMI). BACKGROUND: Patients with diabetes mellitus have a high mortality following AMI, probably due to a high risk of congestive heart failure and reinfarction. Because ACE inhibition effectively reduces progression of heart failure, it could be particularly beneficial in diabetic patients after AMI. METHODS: The study is a retrospective analysis using data from the Trandolapril Cardiac Evaluation (TRACE) study, which was a randomized, double-blind, placebo-controlled trial of trandolapril in 1,749 patients with AMI and ejection fraction < or =35%. The mean follow-up time was 26 months. RESULTS: A history of diabetes was found in 237 (14%) of the 1,749 patients. Treatment with trandolapril resulted in a relative risk (RR) of death from any cause for the diabetic group of 0.64 (95% confidence interval 0.45 to 0.91) versus 0.82 (0.69 to 0.97) for the nondiabetic group. In the diabetic group, trandolapril reduced the risk of progression to severe heart failure markedly (RR, 0.38 [0.21 to 0.67]), and no significant reduction of this end point was found in the nondiabetic group. CONCLUSIONS: The ACE inhibition after myocardial infarction complicated by left ventricular dysfunction appears to be of considerable importance in patients with diabetes mellitus by saving lives and substantially reducing the risk of progression to severe heart failure.

Angiotensin-Converting Enzyme Inhibitors↗

The occurrence and prognostic significance of atrial fibrillation/-flutter following acute myocardial infarction. TRACE Study group. TRAndolapril Cardiac Evalution.

AIMS: To investigate the occurrence and prognostic significance of atrial fibrillation/-flutter following acute myocardial infarction. METHODS AND RESULTS: The occurrence and prognostic significance of atrial fibrillation/-flutter were studied in 6676 consecutive patients with acute myocardial infarction screened in 27 centres in Denmark for inclusion into the TRAndolapril Cardiac Evaluation (TRACE) study. Information about occurrence of atrial fibrillation/-flutter during hospitalization was prospectively collected for the following three periods: day 1-2, day 3-4 and from day 5 until discharge. A total of 1395 patients (21%) suffered from atrial fibrillation/-flutter in one or more of the specified periods during hospitalization. Patients with atrial fibrillation/-flutter were significantly older, a significantly greater proportion were women, left ventricular systolic dysfunction was more extensive, thrombolytic therapy was received less frequently, and anterior Q wave myocardial infarction was experienced more frequently than patients without atrial fibrillation/-flutter. History of acute myocardial infarction and/or angina pectoris was similar in patients with and without atrial fibrillation/-flutter, whereas significantly more patients with atrial fibrillation/-flutter had a history of hypertension, congestive heart failure, diabetes mellitus, pulmonary disease and stroke. The unadjusted in-hospital mortality rate was significantly higher in patients with atrial fibrillation/-flutter in one or more of the specified periods during hospitalization (18%) than in patients without atrial fibrillation/-flutter (9%), P<0.001. After adjustment for baseline characteristics, the presence of atrial fibrillation/-flutter was still associated with increased in-hospital mortality; odds ratio=1.5 (95% Cl: 1.2-1.8), P<0.001. In patients surviving hospitalization, the unadjusted 5-year mortality rate was also significantly higher in patients suffering from atrial fibrillation/-flutter (56%) than in patients without atrial fibrillation/-flutter (34%), P<0.001. After adjustment for important prognostic baseline characteristics, the presence of atrial fibrillation/-flutter was still associated with an increased mortality, relative risk=1.3 (95% Cl: 1.2-1.4). Subgroup analysis revealed that sustained atrial fibrillation/-flutter during hospitalization was associated with the highest risk of dying, relative risk=1.4 (95% Cl: 1.2-1.7). CONCLUSION: Atrial fibrillation/-flutter often occurs after acute myocardial infarction and our analysis demonstrated that it was an independent predictor of an increased short and long-term mortality.

Aged↗

Accelerating impact of diabetes mellitus on mortality in the years following an acute myocardial infarction. TRACE Study Group. Trandolapril Cardiac Evaluation.

AIMS: The development of risk associated with diabetes mellitus during long-term follow-up after a myocardial infarction has not been studied in detail. We have studied time-related changes of risk of death during 10 years of follow-up in a cohort of patients not treated with thrombolytic therapy (the Glostrup cohort) and during 6 years in a cohort receiving such treatment in 40% of cases (the TRACE cohort). METHODS: A subgroup analysis of two cohorts: the Glostrup cohort, which consisted of consecutive cases of acute myocardial infarction who were admitted to one hospital between 1979 and 1983; the TRACE cohort which was comprised of patients with an acute myocardial infarction screened for entry into the Trandolapril Cardiac Evaluation study between May 1990 and June 1992. The Glostrup cohort consisted of 1954 patients and follow-up was for 10 years, The TRACE cohort consisted of 6676 patients and follow-up was for 6 years. Outcome measure was total death. RESULTS: A diagnosis of diabetes mellitus was present in 12% of the two study populations. In multivariate analysis, diabetes mellitus had an independent adverse effect on mortality which increased with time. In the Glostrup cohort risk ratio between day 0 and day 30 was 1.17 and increased to 2.51 (P=0.0002) 7-9 years after discharge from hospital. A similar increase in the risk ratio of diabetes mellitus on mortality was observed in the TRACE cohort (risk ratio for days 0-30 was 1.03, and for years 4-6 was 1.74 (P=0.0001). CONCLUSION: Diabetes mellitus has no independent influence on mortality immediately following an acute myocardial infarction, but has an important influence on long-term mortality which increases with time. The implication is that the effect of intervention against diabetes in patients with acute myocardial infarction and diabetes mellitus must be evaluated over a long course of time.

Aged↗

Subarachnoid haemorrhage with transient myocardial injury and normal coronary arteries.

We present a case of cerebral subarachnoid haemorrhage, with T-wave inversions and myocardial akinesia on echocardiography and ventriculography. Acute coronary angiography showed normal arteries. An aneurysm of the right middle cerebral artery was clamped. Echocardiogram was normalized. We discuss coronary spasm as the possible mechanism of myocardial stunning in subarachnoid haemorrhage.

Coronary Angiography↗

The prognostic importance of smoking status at the time of acute myocardial infarction in 6676 patients. TRACE Study Group.

Smoking is an important risk factor for atherosclerotic heart disease, but several studies have shown smoking to be associated with a favourable prognosis in patients who have suffered an acute myocardial infarction (AMI). We studied a large group of consecutive patients admitted alive to hospital with an infarction in order to further study the prognostic importance of smoking status at the time of myocardial infarction. The study cohort comprised 6676 patients with an enzyme-confirmed myocardial infarction admitted to 27 Danish hospitals over a 26-month period between 1990 and 1992. Smoking status was determined at the time of hospitalisation and complete follow-up was obtained in October 1996. Smokers were on average 10 years younger, had fewer concomitant cardiac risk factors, and were more likely to be male and to receive thrombolytic therapy more frequently than non-smokers. In univariate analysis, smoking was associated with reduced 30-day and long-term mortality (risk ratio at 30 days 0.55, P < 0.001, risk ratio long-term 0.59, P < 0.001). When age only was included in a multivariate analysis, smoking was no longer of importance in short- or long-term mortality (risk ratio 0.92, P = 0.4 at 30 days and long-term risk ratio 0.98, P = 0.7). Inclusion of further variables did not change this picture. In conclusion, smoking contributes to the occurrence of AMI at a younger age. The more favourable prognosis in smokers at the time of AMI is a result of more favourable baseline characteristics, especially their lower age.

Chi-Square Distribution↗

Age-distribution, risk factors and mortality in smokers and non-smokers with acute myocardial infarction: a review. TRACE study group. Danish Trandolapril Cardiac Evaluation.

Smoking is a risk factor for acute myocardial infarction; paradoxically, many studies have shown a lower post-infarct mortality among smokers. There are some important differences between smokers and non-smokers, which might explain the observed difference in mortality: smokers have less multivessel disease and atherosclerosis but are more thrombogenic; thrombolytic therapy seems to be more effective among smokers; smoking might result in an increased out-of-hospital mortality rate, by being more arrhythmogenic; and smokers are on average a decade younger than non-smokers at the time of infarction, and have less concomitant disease. Adjusting for these differences in regression analyses shows that smoking is not an independent risk factor for mortality after acute myocardial infarction. The difference in age and risk factors are responsible for the lower mortality among smokers.

Age Distribution↗

Changes in absolute and relative importance in the prognostic value of left ventricular systolic function and congestive heart failure after acute myocardial infarction. TRACE Study Group. Trandolapril Cardiac Evaluation.

Changes in the importance of left ventricular (LV) systolic dysfunction and congestive heart failure (CHF) with time after an acute myocardial infarction (AMI) after the introduction of thrombolytic therapy have not been studied. LV systolic function, measured as wall motion index (WMI) by echocardiography, was assessed in 6,676 consecutive patients with an enzyme-confirmed AMI. So that changes in the prognostic value of WMI or CHF could be studied, separate analyses were performed at selected time periods. Average monthly mortality (deaths per 100 patients per month) was determined from life-table analyses, with groups divided by WMI above and below 1.2 (a WMI > 1.2 corresponds to an ejection fraction > 0.35) or by presence and/or absence of CHF. Relative risk (95% confidence intervals [CI]) was determined by proportional hazard models, including baseline characteristics. In patients with LV dysfunction or CHF, monthly mortality was high during the first month (18.3 +/- 1.6% and 20.2 +/- 1.6%, respectively), decreased during the first year, and was stable thereafter (0.8 +/- 0.1% and 1.0 +/- 0.1%, respectively, average monthly mortality after year 3). The relative risk of LV dysfunction decreased from 2.4 (CI 2.0 to 2.9) to 1.3 (CI 1.0 to 1.6) in the same period. The relative risk of CHF decreased from 2.9 (CI 2.3 to 3.8) to 1.6 (CI 1.3 to 2.0). In patients without LV dysfunction or CHF, monthly mortality was relatively high during the first month (5.2% +/- 0.7% and 3.4% +/- 0.6%, respectively) but decreased within the first year to low, stable values (0.6% +/- 0.1% and 0.4% +/- 0.1%, respectively, average monthly mortality after year 3). In patients who received thrombolytic therapy, the relative risk associated with a WMI < or = 1.2 decreased from 3.0 (CI 2.0 to 4.4) to 1.3 (CI 0.9 to 1.6) and from 3.2 (CI 2.0 to 5.1) to 1.7 (CI 1.2 to 2.4) in patients with CHF. The risk of dying decreases steeply with time after an AMI with or without LV dysfunction or CHF and stabilizes at low values after 1 year. This is in contrast to the relative importance of these risk factors, which is maintained for > or = 5 years but decreases with time.

Aged↗

Long-term prognosis after acute myocardial infarction in patients with a history of arterial hypertension. TRACE study group.

AIMS: The objective of the study was to investigate the influence of a history of arterial hypertension on long-term prognosis after an acute myocardial infarction in a representative population, and secondly to assess the impact on prognosis of left ventricular systolic function in hypertensives after acute myocardial infarction. METHODS: A retrospective analysis of survival data on 6676 patients with acute myocardial infarction screened for entry into the TRAndolapril Cardiac Evaluation (TRACE) study. Follow-up time was 4-6 years. RESULTS: One thousand five hundred and seven (23%) of the patients had a history of arterial hypertension. During the time of observation 763 (50.6%) hypertensives and 2253 (43.7%) normotensives died, corresponding to a risk ratio for death in hypertensives of 1.23 (1.13-1.33, P < 0.0001). In a multivariate analysis considering 12 other major risk factors after myocardial infarction, the risk ratio for death in hypertensives was 1.14 (1.04-1.24). There was a significant interaction between hypertension and age. Thus, hypertension only increased risk in patients aged 65 years or less (P < 0.001). No interaction with left ventricular systolic function was found. CONCLUSION: A history of arterial hypertension is a moderate risk factor for mortality after an acute myocardial infarction in patients aged 65 years or less. This excess risk is present at all levels of left ventricular systolic function.

Age Distribution↗

The prognostic value of the QT interval and QT interval dispersion in all-cause and cardiac mortality and morbidity in a population of Danish citizens.

AIMS: To evaluate the prognostic value of the QT interval and QT interval dispersion in total and in cardiovascular mortality, as well as in cardiac morbidity, in a general population. METHODS AND RESULTS: The QT interval was measured in all leads from a standard 12-lead ECG in a random sample of 1658 women and 1797 men aged 30-60 years. QT interval dispersion was calculated from the maximal difference between QT intervals in any two leads. All cause mortality over 13 years, and cardiovascular mortality as well as cardiac morbidity over 11 years, were the main outcome parameters. Subjects with a prolonged QT interval (430 ms or more) or prolonged QT interval dispersion (80 ms or more) were at higher risk of cardiovascular death and cardiac morbidity than subjects whose QT interval was less than 360 ms, or whose QT interval dispersion was less than 30 ms. Cardiovascular death relative risk ratios, adjusted for age, gender, myocardial infarct, angina pectoris, diabetes mellitus, arterial hypertension, smoking habits, serum cholesterol level, and heart rate were 2.9 for the QT interval (95% confidence interval 1.1-7.8) and 4.4 for QT interval dispersion (95% confidence interval 1.0-19-1). Fatal and non-fatal cardiac morbidity relative risk ratios were similar, at 2.7 (95% confidence interval 1.4-5.5) for the QT interval and 2.2 (95% confidence interval 1.1-4.0) for QT interval dispersion. CONCLUSION: Prolongation of the QT interval and QT interval dispersion independently affected the prognosis of cardiovascular mortality and cardiac fatal and non-fatal morbidity in a general population over 11 years.

Adult↗

Normal values for ambulatory blood pressure and differences between casual blood pressure and ambulatory blood pressure: results from a Danish population survey.

OBJECTIVE: To determine normal values for 24 h ambulatory blood pressure in a Danish population and to study the relationship to casual blood pressure. STUDY POPULATION: A random sample of 2656 Danish men and women participated in a population survey. The participants were selected in age groups and were aged 41-42, 51-52, 61-62 or 71-72 years during the survey. METHODS; Casual blood pressure (standard mercury sphygmomanometer) and 24 h ambulatory blood pressure (Takeda TM-2421) were measured successfully in 2082 subjects. All subjects under antihypertensive treatment (247) were excluded, restricting the study population to 1835 participants. RESULTS: Casual and 24 h ambulatory blood pressure were correlated (P < 0.0001) in all age and sex groups. Casual systolic/diastolic blood pressures were 129.6+/-17.8/82.6+/-10.3 for men and 125.1+/-18.2/79.7+/-9.9 mmHg for women. Twenty-four-hour average blood pressures were 130.8+/-14.2/75.3+/-8.6 for men and 122.4+/-14.9/69.6+/-8.3 mmHg for women. A multivariate linear logistic regression model confirmed that a high casual blood pressure (odds ratios 11/7 for systolic/diastolic blood pressure; P=0.001) was the major determinant of a lower ambulatory than casual blood pressure; age and sex were less important. CONCLUSION: The relationship between casual blood pressure on the one hand and the difference in casual and 24 h ambulatory blood pressure on the other hand suggests that ambulatory blood pressure represents a regression towards the mean compared to casual blood pressure. Any definition of an upper normal level of 24 h ambulatory blood pressure that is derived from a correlation between casual and ambulatory measurements will be inaccurate, and must await long-term studies of the relationship between ambulatory blood pressure and subsequent cardiovascular events.

Adult↗

Influence of a history of arterial hypertension and pretreatment blood pressure on the effect of angiotensin converting enzyme inhibition after acute myocardial infarction. Trandolapril Cardiac Evaluation Study.

OBJECTIVE: To evaluate the influence of a history of arterial hypertension and the level of pretreatment blood pressure on the efficacy of the angiotensin converting enzyme (ACE) inhibitor trandolapril on mortality and morbidity in patients with acute myocardial infarction (AMI) and left ventricular dysfunction. METHODS: Data from the Trandolapril Cardiac Event study, in which 1749 patients with an enzyme verified AMI and echocardiographic evidence of left ventricular dysfunction were randomized in a double-blind manner to treatment with trandolapril or placebo, were retrospectively analysed. Follow up time was 24-50 months (mean 26 months). RESULTS: Four hundred patients (23%) had a history of arterial hypertension. A total of 173 (43%) patients with a history of hypertension died during follow up versus 500 (37%) patients in the normotensive group. Treatment with trandolapril in the hypertensive individuals was associated with a reduction in the relative risk of death to 0.59 (95% confidence interval 0.44-0.80), versus 0.85 (0.72-1.02) in the normotensive individuals. The significant reduction in mortality in hypertensive individuals persisted after multivariate analysis controlling for a broad spectrum of potential confounders. Also, benefit from ACE inhibition increased with increasing blood pressure at the time of randomization. Significant interactions between benefit from ACE inhibition and hypertension history, and systolic and diastolic blood pressure were found. CONCLUSION: ACE inhibition after AMI complicated by left ventricular dysfunction may be of particular importance in patients with a history of arterial hypertension or a relatively high pretreatment blood pressure. However, further investigations are necessary to establish the clinical impact of these results.

Aged↗

Glucose tolerance status and severity of coronary artery disease in men referred to coronary arteriography.

Increasing attention is being paid to disturbances in glucose metabolism as key explanatory factors for the development of coronary artery disease. We studied the prevalence of impaired glucose tolerance and non-insulin-dependent diabetes and the levels of plasma insulin after an oral glucose tolerance test in 99 men with heart disease but without a history of diabetes referred to coronary arteriography; we also compared the outcome with a matched control group (n = 116). The severity of atherosclerosis in coronary angiograms was evaluated according to glucose tolerance status. Among the 99 patients with coronary artery disease, 37.4% had an abnormal oral glucose tolerance test result, whereas only 18.1% of the control group had an abnormal result (p < 0.01). Moreover, patients with heart disease and normal glucose tolerance were hyperinsulinemic compared with the control group (p < 0.01). By analysis of variance no statistically significant difference in severity of coronary atherosclerosis on coronary angiograms was found. In conclusion, we demonstrated frequent disturbances in glucose metabolism indicating insulin resistance in patients with ischemic heart disease without a history of diabetes, but we could not demonstrate a relation between these disturbances and degree of coronary atherosclerosis.

Adult↗