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Myocardial bridging: a review with emphasis on electrocardiographic findings
Daniele Rovai1, Gianluca Di Bella, Alessandro Pingitore
1CNR, Institute of Clinical Physiology, Pisa, Italy.
Insights
Myocardial bridging (MB), where coronary arteries run within the heart muscle, can cause chest pain. However, its symptoms and electrocardiogram (ECG) findings are not specific, making diagnosis challenging.
Area of Science:
- Cardiology
- Cardiovascular Research
Background:
- Myocardial bridging (MB) involves a segment of a coronary artery coursing through the heart muscle, leading to systolic compression.
- It commonly affects the left anterior descending artery, present in 14-35% of individuals.
- Potential causes of ischemia include systolic compression, aging-related diastolic dysfunction, atherosclerosis, LV hypertrophy, vasospasm, and microvascular dysfunction.
Purpose of the Study:
- To review myocardial bridging (MB).
- To emphasize electrocardiographic manifestations of MB.
Main Methods:
- Literature review focused on myocardial bridging (MB).
- Specific emphasis on electrocardiographic findings associated with MB.
Main Results:
- Stable angina is a common presentation, suggesting MB in low-risk patients with symptoms or ischemia.
- Electrocardiogram (ECG) changes are non-specific; resting ECG may be normal or show ST anomalies.
- Exercise stress tests and scintigraphy show non-specific signs of ischemia, conduction disturbances, or arrhythmias.
Conclusions:
- Myocardial bridging (MB) can induce myocardial ischemia during stress.
- Clinical presentation and ECG findings for MB are not specific.
- MB is linked to acute coronary syndrome, vasospasm, and sudden cardiac death, despite debated clinical significance.
Background:
Myocardial bridging (MB) occurs when a segment of an epicardial coronary artery takes an intra- myocardial course, thus leading to systolic compression. Most myocardial bridges involve the left anterior descending artery and are observed in 14-35% of patients. Different pathophysiological mechanisms can induce symptoms secondary to myocardial ischemia: systolic coronary compression, diastolic dysfunction associated with aging and coronary atherosclerosis, LV hypertrophy, vasospasm, microvascular and endothelial dysfunction, plaque development proximal to the bridge.
Methods:
We performed a literature review of MB, with a particular emphasis on electrocardiographic manifestations.
Results:
Stable angina-like chest pain is the usual presentation and MB should be suspected in patients at low risk for coronary atherosclerosis which refer this symptom or which present myocardial ischemia at instrumental examinations. ECG changes are not specific for MB and resting ECG is often normal or presents ST segment anomalies. Exercise stress test often shows non specific signs of ischemia, conduction disturbances or arrhythmias which do not allow the distinction between myocardial bridging and other causes of myocardial ischemia; angina often appears during exercise, even in the absence of ECG changes. Myocardial perfusion deficits at scintigraphy are neither obligatory nor specific. Although the clinical significance of MB is still debated, MB has been associated with acute coronary syndrome, coronary vasospasm, and even sudden cardiac death.
Conclusion:
Although MB may lead to myocardial ischemia during stress, its clinical presentation and electrocardiographic findings are not specific.
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