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Diagnostic Indicators of ECG for Coronary Slow Flow Phenomenon; a Systematic Review and Meta-Analysis
MohammadHossein MozafaryBazargany1, Parham Samimisedeh2, Niloofar Gholami2
1Rajaie Cardiovascular Medical and Research Center, Iran University of Medical, Tehran, Iran.
Insights
Electrocardiogram (ECG) changes, including prolonged P-wave maximum and P-dispersion, are significantly associated with Coronary Slow Flow Phenomenon (CSFP). These ECG findings may serve as valuable diagnostic indicators for CSFP before invasive angiography.
Area of Science:
- Cardiology
- Diagnostic Imaging
- Clinical Electrophysiology
Background:
- Coronary Slow Flow Phenomenon (CSFP) diagnosis currently relies solely on epicardial coronary angiography.
- There is a need for non-invasive diagnostic tools to identify CSFP.
Purpose of the Study:
- To systematically review and compare Electrocardiogram (ECG) findings in patients with and without CSFP.
- To identify potential ECG markers for CSFP diagnosis.
Main Methods:
- Systematic literature search of MEDLINE, Scopus, Embase, and Web of Science up to February 2023.
- Meta-analysis of 32 studies with 3,937 patients (2,069 with CSFP) using random-effect models.
- Calculation of mean differences and odds ratios for various ECG parameters.
Main Results:
- CSFP patients exhibited significantly higher P-wave maximum (Pmax) and P-dispersion (Pd).
- Prolonged durations were observed for QT wave, uncorrected QTd, and corrected dispersion (QTcd) in the CSFP group.
- Elevated frontal QRS-T angle and T-peak to T-end (Tp-e) intervals were noted in CSFP patients.
Conclusions:
- Several ECG parameters, including Pmax, Pd, QT, QTc, QTd, QTcd, Tp-e, and frontal QRS-T angle, are significantly altered in CSFP.
- These ECG findings show potential as non-invasive diagnostic indicators for CSFP, preceding coronary angiography.
Introduction:
Currently, epicardial coronary angiography is still the only diagnostic tool for Coronary Slow Flow Phenomenon (CSFP). This study aimed to systematically review studies that compared Electrocardiogram (ECG) findings between patients with and without CSFP.
Methods:
Using relevant key terms, we systematically searched MEDLINE, Scopus, Embase, and Web of Science to find relevant studies up to February 5th, 2023. Effect sizes in each study were calculated as mean differences and crude odds ratio; then, random-effect models using inverse variance and Mantel-Haenszel methods were used to pool standardized mean differences (SMD) and crude odds ratios, respectively.
Results:
Thirty-two eligible articles with a total sample size of 3,937 patients (2,069 with CSFP) were included. CSFP patients had higher P-wave maximum (Pmax) (SMD: 1.02 (95% confidence interval (CI): 0.29 - 1.76); p=0.006) and P-dispersion (Pd) (SMD: 1.63 (95% CI: 0.99 - 2.27); p<0.001) compared to the control group. CSFP group also showed significantly longer QT wave maximum duration (SMD: 0.69 (95% CI: 0.33 - 1.06); p<0.001), uncorrected QTd (SMD: 1.89(95% CI: 0.67 - 3.11); p=0.002), and corrected dispersion (QTcd) (SMD: 1.63 (95% CI: 1.09 - 2.17), p<0.001). The frontal QRS-T angle was significantly higher in the CSFP group in comparison with the control group (SMD: 1.18 (95% CI: 0.31 - 2.04; p=0.007). While CSFP patients had a significantly higher T-peak to T-end (Tp-e) (SMD:1.71 (95% CI: 0.91, 2.52), p<0.001), no significant difference was noted between groups in terms of Tp-e to QT (p=0.16) and corrected QT ratios (p=0.07).
Conclusion:
Our findings suggest several ECG parameters, such as P max, Pd, QT, QTc, QTd, QTcd, Tp-e, and frontal QRS-T angle, may be prolonged in CSFP patients, and they could be employed as diagnostic indicators of CSFP before angiography.
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