Difference vectors to describe dynamics of the ST segment and the ventricular gradient in acute ischemia
C Cato ter Haar1, Arie C Maan, Stafford G Warren
1Cardiology Department, Leiden University Medical Center, Leiden, the Netherlands.
Insights
Detecting acute coronary syndrome (ACS) is improved by analyzing ST vector (ΔST) and QRST integral vector (ΔVG) changes. This method enhances early detection of ischemia, aiding timely intervention for myocardial salvage.
Area of Science:
- Cardiology
- Medical Diagnostics
- Biomedical Engineering
Background:
- Electrocardiogram (ECG) is crucial for diagnosing acute coronary syndrome (ACS), particularly in the hyperacute phase.
- Accurate ECG interpretation is vital for determining the need for primary percutaneous coronary intervention (PCI).
- Pre-existing ST-segment abnormalities can complicate ACS diagnosis via ECG.
Purpose of the Study:
- To investigate the diagnostic potential of ST vector (ΔST) and QRST integral vector (ΔVG) changes for ischemia detection.
- To assess the efficacy of ΔST and ΔVG in identifying patients requiring urgent catheter intervention.
Main Methods:
- Synthesized vectorcardiograms (VCGs) from ECGs of 84 patients undergoing elective percutaneous transluminal coronary angioplasty (PTCA).
- Measured ST and VG vector magnitudes and orientations, and their changes (ΔST, ΔVG) from baseline after 3 minutes of balloon occlusion.
- Analyzed planar angles between ΔST and ΔVG vectors and performed linear regression analysis.
Main Results:
- A strong linear correlation was found between ΔVG and ΔST (ΔVG=324·ΔST, r=0.85, P<0.0001).
- Ischemia thresholds were established at ΔST > 0.05mV and ΔVG > 16.2mV·ms.
- Classical ST elevation criteria identified 55% of ischemic patients, while combined ΔST and ΔVG criteria identified 87%.
Conclusions:
- Differential diagnosis using ΔST and ΔVG, with a non-ischemic baseline ECG, significantly improves ECG-guided detection of ischemia.
- This approach enhances the identification of patients who urgently need catheter intervention.
- The study highlights the utility of vector changes for improved ACS diagnosis and triage.
Background:
The ECG is important in the diagnosis and triage of the acute coronary syndrome (ACS), especially in the hyperacute phase, the "golden hours," during which myocardial salvage possibilities are largest. An important triaging decision to be taken is whether or not a patient requires primary PCI, for which, as mentioned in the guidelines, the presence of an ST elevation (STE) pattern in the ECG is a major criterion. However, preexisting non-zero ST amplitudes (diagnostic, but also non-diagnostic) can obscure or even preclude this diagnosis.
Methods:
In this study, we investigated the potential diagnostic possibilities of ischemia detection by means of changes in the ST vector, ΔST, and changes in the VG (QRST integral) vector, ΔVG. We studied the vectorcardiograms (VCGs) synthesized of the ECGs of 84 patients who underwent elective PTCA. Mean±SD balloon occlusion times were 260±76s. The ECG ischemia diagnosis (ST elevation, STE, or non-ST-elevation, NSTE), magnitudes and orientations of the ST and VG vectors, and the differences ΔST and ΔVG with the baseline ECG were measured after 3min of balloon occlusion.
Results:
Planar angles between the ΔST and ΔVG vectors were 14.9±14.0°. Linear regression of ΔVG on ΔST yielded ΔVG=324·ΔST (r=0.85; P<0.0001, ΔST in mV). We adopted ΔST>0.05mV, and the corresponding ΔVG>16.2mV·ms as ischemia thresholds. The classical criteria characterized the ECGs of 46/84 (55%) patients after 3min of occlusion as STE ECGs. Combined application of the ΔST and ΔVG criteria identified 73/84 (87%) of the patients as ischemic.
Conclusion:
Differential diagnosis by ΔST and ΔVG (requiring an earlier made non-ischemic baseline ECG) could dramatically improve ECG guided detection of patients who urgently require catheter intervention.
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