Key result
The Laplacian Eigenmaps metric detected acute myocardial ischemia earlier (mean Time to Threshold 226.5 s) and with greater contrast than traditional ST-segment metrics in a canine model.
Why the study?
Do Laplacian Eigenmaps and Conduction Velocity based markers improve the detection of ischemic stress compared to traditional ST segment metrics in a canine model?
Do Laplacian Eigenmaps and Conduction Velocity based markers improve the detection of ischemic stress compared to traditional ST segment metrics in a canine model?
Absolute Event Rate: 226.5% vs 262.8%
Novel ECG metrics based on Laplacian Eigenmaps and Conduction Velocity may offer comparable or superior detection of myocardial ischemic stress compared to traditional ST-segment analysis in preclinical models.
Does not inform clinical ECG use; leaves open translation of Laplacian Eigenmaps metrics from canine models to human ischemia detection.
The underlying pathophysiology of ischemia and its electrocardiographic consequences are poorly understood, resulting in unreliable diagnosis of this disease. This limited knowledge of underlying mechanisms suggests a data driven approach, which seeks to identify patterns in the ECG that can be linked statistically to underlying behavior and conditions of ischemic stress. The gold standard ECG metrics for evaluating ischemia monitor vertical deflections within the ST segment. However, ischemia influences all portions of the electrogram. Another metric that targets the QRS complex during ischemia is Conduction Velocity (CV). An even more inclusive, data driven approach is known as "Laplacian Eigenmaps" (LE), which can identify trajectories, or "manifolds", that respond to different spatiotemporal consequences of ischemic stress, and these changes to the trajectories on the manifold may serve as a clinically relevant biomarker. On this study, we compared the LE- and CV-based markers against two gold standards for detecting ischemic stress, both derived from the ST segment. We evaluated the response time and fidelity of each biomarker using a Time to Threshold (TTT) and Contrast Ratio (CR) measure, over 51 episodes recorded as cardiac electrograms from a canine model of controlled ischemia. The results show that metrics designed to monitor regions beyond the ST segment can perform at least as well, if not better, than traditional ST segment based metrics.
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Good et al. (2017) studied Acute myocardial ischemia (n=15). Laplacian Eigenmaps (LE) and Conduction Velocity (CV) metrics vs. ST-derived metrics (ST40%, ST40) was evaluated on Time to Threshold (TTT) for detecting ischemic stress in seconds. The Laplacian Eigenmaps metric detected acute myocardial ischemia earlier (mean Time to Threshold 226.5 s) and with greater contrast than traditional ST-segment metrics in a canine model.
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