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Published on: April 13, 2015
Reduced Left Ventricular Global Longitudinal Strain in the Coronary Slow Flow Phenomenon: A Systematic Review and
Mahin Seifi Alan1,2, Kobra Hosseini1,2, Sanaz Seifi Alan1,2
1Clinical Research and Development Center of the Kamali Hospital, Alborz University of Medical Sciences, Karaj, Iran.
Highlights:
CSFP is associated with a significant reduction in left ventricular global longitudinal strain (LVGLS) despite preserved left ventricular ejection fraction (LVEF).Layer-specific strain analysis reveals the most pronounced impairment in the endocardial layer.LVGLS demonstrates moderate-to-high diagnostic accuracy for detecting CSFP (pooled AUC: 0.80).These findings support LVGLS as a noninvasive marker of subclinical myocardial dysfunction in CSFP.
Background:
The coronary slow flow phenomenon (CSFP) involves delayed coronary artery filling without obstruction and is associated with angina and myocardial ischemia. This meta-analysis assessed the link between CSFP and impaired left ventricular global longitudinal strain (LVGLS), a marker of subclinical myocardial dysfunction.
Methods:
A systematic search (PubMed, Embase, Scopus up to January 2025) identified 18 observational studies comparing LVGLS and layer-specific strain in patients with CSFP vs controls with normal coronary flow.
Results:
Patients with CSFP showed significantly reduced LVGLS vs controls (SMD, 1.22; 95% CI, 0.69 to 1.75). Layer-specific analysis revealed impairment across all myocardial layers, most pronounced in the endocardium (SMD, 0.79; 95% CI, 0.21 to 1.38). While left ventricular ejection fraction (LVEF) was preserved, LVGLS demonstrated moderate-to-high diagnostic accuracy for CSFP (AUC, 0.80; 95% CI, 0.66 to 0.95). Reduced LVGLS independently predicted CSFP (adjusted OR, 1.43; 95% CI, 1.19 to 1.46). Exercise stress effects on LVGLS were inconsistent.
Conclusion:
CSFP is associated with impaired LVGLS, particularly in the endocardial layer, despite preserved LVEF. LVGLS may serve as a noninvasive marker for subclinical dysfunction in CSFP.
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