Non-invasive detection of coronary artery disease by a newly developed high-frequency QRS electrocardiogram
A M Rahman1, A Gedevanishvili, M W Bungo
1University of Texas Medical Branch, Galveston, TX, USA. morahman@utmb.edu
Insights
A new high-frequency QRS electrocardiogram (HFQRS ECG) shows promise for detecting coronary artery disease (CAD). This inexpensive, non-invasive test demonstrated high sensitivity and specificity, comparable to more complex imaging methods.
Area of Science:
- Cardiology
- Biomedical Engineering
Background:
- Conventional 12-lead electrocardiogram (ECG) exhibits limited sensitivity and specificity for diagnosing coronary artery disease (CAD).
- Myocardial perfusion imaging (MPI) is a sensitive non-invasive method for CAD detection but is more resource-intensive.
Purpose of the Study:
- To evaluate the diagnostic accuracy of a novel 12-lead high-frequency QRS electrocardiogram (HFQRS ECG) for identifying obstructive CAD.
- To compare the performance of HFQRS ECG against adenosine sestamibi myocardial perfusion study (MPI).
Main Methods:
- Developed criteria for a positive 12-lead HFQRS-ECG test using signal-averaged beats and focusing on 'reduced amplitude zones' (RAZs).
- Prospectively applied these criteria to 18 patients undergoing MPI and coronary angiography.
- Assessed CAD presence based on reversible ischemic defects on MPI and angiographic findings.
Main Results:
- The 12-lead HFQRS ECG correctly identified CAD in 14 out of 18 patients when compared to MPI results.
- Achieved a sensitivity of 87.5% and specificity of at least 80% for identifying CAD.
- HFQRS ECG demonstrated accuracy comparable to MPI, with potential for wider application due to its simplicity and lower cost.
Conclusions:
- Resting 12-lead HFQRS ECG is a promising, non-invasive technique for CAD detection.
- It offers a potentially viable, cost-effective alternative to current expensive and time-consuming diagnostic methods.
- The technique utilizes standard ECG leads and electrodes, facilitating widespread adoption.
Abstract:
Compared to other non-invasive methods, the conventional 12-lead electrocardiogram (ECG) has low sensitivity and specificity for identifying coronary artery disease (CAD). We compared the newly developed high-frequency QRS electrocardiogram (HFQRS ECG, 150-250 Hz) with adenosine sestamibi myocardial perfusion study (MPI)-the most sensitive non-invasive study in cardiology practice. Using advanced 12-lead computer-based ECG software recently developed at NASA, criteria for a positive 12-lead HFQRS-ECG test for obstructive CAD were developed using 300 signal-averaged beats from patients undergoing elective coronary angiograms for evaluation of chest pain. These criteria, which rely strictly upon the presence or the absence of morphologic 'reduced amplitude zones' (RAZs) and not upon the 'root mean squared' (RMS) voltage amplitudes of the HFQRS complexes, were then applied prospectively to 18 patients undergoing MPI. Active CAD was considered present when reversible ischemic defects were present on MPI. Of the 18 patients, 9 had reversible defects on MPI (positive scan), whereas the other 9 had no reversible perfusion defects (negative scan). Patients with a positive nuclear study went on to coronary angiography confirming CAD, except in one patient who had nonobstructive coronary disease (<50% stenosis). Eight of the 18 subjects therefore had active CAD, whereas 10 were judged not to have active CAD. The 12-lead HFQRS-ECG result was consistent with nuclear scan results in 14 of 18 patients. The HFQRS-ECG and nuclear results differed in: (1) one patient who had a low score positive MPI, negative HFQRS-ECG and normal coronary angiogram; (2) one patient who had a small reversible anterior wall perfusion defect, 60% LAD lesion on angiogram but a negative HF-QRS result; and (3) two individuals who had positive HFQRS-ECG results in the face of negative nuclear scans but who did not undergo angiography. 12-lead HFQRS ECG had excellent sensitivity (87.5% based on 7/8 true positives correctly identified) and specificity (no worse than 80%, >8/10 true negatives correctly identified) for identifying CAD. 12-lead HFQRS ECG is an easily performed, inexpensive and potentially widely available technique that utilizes the same leads and electrodes as the conventional 12-lead ECG. It had accuracy comparable to MPI in this study. Resting 12-lead HFQRS ECG appears to be a very promising non-invasive technique for identifying CAD and may represent a viable alternative to many of the more expensive and time-consuming techniques presently utilized for non-invasively identifying CAD.
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