84 research outputs found
Complex systems and the technology of variability analysis
Characteristic patterns of variation over time, namely rhythms, represent a defining feature of complex systems, one that is synonymous with life. Despite the intrinsic dynamic, interdependent and nonlinear relationships of their parts, complex biological systems exhibit robust systemic stability. Applied to critical care, it is the systemic properties of the host response to a physiological insult that manifest as health or illness and determine outcome in our patients. Variability analysis provides a novel technology with which to evaluate the overall properties of a complex system. This review highlights the means by which we scientifically measure variation, including analyses of overall variation (time domain analysis, frequency distribution, spectral power), frequency contribution (spectral analysis), scale invariant (fractal) behaviour (detrended fluctuation and power law analysis) and regularity (approximate and multiscale entropy). Each technique is presented with a definition, interpretation, clinical application, advantages, limitations and summary of its calculation. The ubiquitous association between altered variability and illness is highlighted, followed by an analysis of how variability analysis may significantly improve prognostication of severity of illness and guide therapeutic intervention in critically ill patients
Patients with uncomplicated coronary artery disease have reduced heart rate variability mainly affecting vagal tone
The effect of a mobile coronary care unit on mortality in patients with acute myocardial infarction or cardiac arrest outside hospital
Resuscitation of patients in cardiac arrest outside hospital. Comparison of two different organizations of mobile coronary care in one community
Antiarrhythmic efficacy and side- effects of lidocaine given in the prehospital phase of acute myocardial infarction
Effects of cold on ST amplitudes and blood pressure during exercise in angina pectoris
Home-based exercise in stable coronary artery disease lowers circulating levels of angiogenic cytokines
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