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S Højberg

Publications and source records attributed to S Højberg.

6 recordsLinked to original sources

[Prognostic values of echocardiography compared with clinical variables in suspected heart disease. Multivariate analysis of long-term prognosprognosis in 456 patients].

The aim of the study was to evaluate the prognostic significance of clinical and echocardiographic data in patients referred for echocardiography in a retrospective analysis. Four hundred and fifty-six patients from a district hospital were studied. Survival after three years was 64%. Multivariate analysis identified five factors with independent prognostic information (relative risks of death are shown in brackets): left ventricular wall motion index (WMI) < or = 1.2 by echocardiography (2.5), status as in-patient (2.1), age > 65 years (1.7), clinical heart failure (1.9) and atrial fibrillation (1.5). When information on age, hospitalisation status, heart failure and heart rhythm had already been entered in the Cox model, echocardiographic results such as decreased WMI and dilated right ventricle still gave further prognostic information. We conclude that among conventional clinical and echocardiographic data WMI was the strongest predictor of long-term survival, and, despite prior knowledge of major clinical features, echocardiography provided further prognostic information.

Adult↗

Prognostic value of echocardiography compared to other clinical findings. Multivariate analysis based on long-term survival in 456 patients.

The prognostic significance of conventional clinical and echocardiographic data in patients referred to echocardiography was retrospectively analyzed. 456 patients (206 females and 250 males) were studied in the department of cardiology in a district hospital. Survival after 3 years was 64%. By multivariate analysis five factors contained independent, significant, prognostic information (hazard ratios for death are given in parentheses): left ventricular wall motion score index (WMI) < or = 1.2 by echocardiography (2.5), status as inpatient (2.1), age > 65 years (1.7), clinical heart failure (1.9) and atrial fibrillation (1.5). A stepwise multivariate analysis was performed by entering variables into a model initially forced to contain information on age, hospitalization status, treatment of heart failure and heart rhythm. In this analysis, a poor WMI (< or = 1.2) and a dilated right ventricle contained further independent prognostic information. In conclusion, among conventional clinical and echocardiographic data, WMI was the most powerful predictor of long-term survival, and despite knowledge of major clinical features echocardiography provided further prognostic information.

Aged↗

[The 24-hour heart rate variability. An important predictor of sudden death after myocardial infarction].

The activity of the cardiac autonomic nervous system can be estimated by measurement of beat to beat variations in heart rate-heart rate variability (HRV). In survivors after myocardial infarction, reduced 24-hour HRV, is an independent predictor of mortality/sudden cardiac death. The attenuated HRV is presumed to indicate reduced vagal function and concomitant high sympathetic activity. In experimental studies, this combination reduces the threshold for inducing malignant tachyarrhythmias, and is very probably a clinically important factor for the evolution of ventricular arrhythmias. Measurement of HRV in ordinary 24-hour ECG recordings can, together with other non-invasive measurements, stratify arrhythmic risk in survivors of myocardial infarction.

Arrhythmias, Cardiac↗

[Serotonin and cardiovascular control].

Serotonin is a monoamine and is widely distributed in the human organism. Serotonin is synthesized from the amino acid tryptophane and is broken down via mono-amino-oxydase enzymes to 5-hydroxy-indol-acetic acid and by acetylizing and methylizing to melantonin. In 1986, a consensus concerning the classification of the serotonergic receptors was established. Three main classes were determined, viz: 5-HT1, 5-HT2 and 5-HT3. 5-HT1 receptors were further subdivided into A, B, C and D-receptors and, of these, the 5-HT1A-receptor is involved in the centrally mediated blood pressure control via reduction in the pre- and postganglionic sympathetic activity. The 5-HT2 receptors are primarily involved in control of peripheral blood pressure where agonizing results in vascular contraction of the large arteries and veins and thrombocyte aggregation. The 5-HT1 receptors are also involved peripherally in connection with release of relaxing factors derived from endothelium. In vitro and in animal experiments, it has been demonstrated that serotonin is capable of inducing arrhythmia and myocardial dysfunction via 5-HT3 receptors. Several preparations with effects on both the central and peripheral serotonergic receptors are already marketed for treatment of hypertension and other conditions.

Cardiovascular Physiological Phenomena↗